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Volumn 185, Issue , 2016, Pages 810-828

Biohydrogen and Biogas – An overview on feedstocks and enhancement process

Author keywords

Gaseous fuels; Heat engines; Municipal solid wastes; Natural gas; Slurry

Indexed keywords

AGRICULTURAL WASTES; AGRICULTURE; BIOGAS; CARBON DIOXIDE; CROPS; ELECTRIC POWER SYSTEMS; ENERGY RESOURCES; ENGINES; FUEL CELLS; HEAT ENGINES; NATURAL GAS; REFUSE DISPOSAL; SLURRIES; SOLID WASTES; SUBSTRATES; WASTE DISPOSAL; WASTE INCINERATION;

EID: 84982083136     PISSN: 00162361     EISSN: None     Source Type: Journal    
DOI: 10.1016/j.fuel.2016.08.030     Document Type: Review
Times cited : (176)

References (272)
  • 1
    • 79957625438 scopus 로고    scopus 로고
    • An evaluative report and challenges for fermentative biohydrogen production
    • [1] Sinha, Pallavi, Pandey, Anjana, An evaluative report and challenges for fermentative biohydrogen production. Int J Hydrogen Energy 36 (2011), 7460–7478.
    • (2011) Int J Hydrogen Energy , vol.36 , pp. 7460-7478
    • Sinha, P.1    Pandey, A.2
  • 2
    • 68349152509 scopus 로고    scopus 로고
    • Advances in biohydrogen production process: an approach towards commercialization
    • [2] Das, D., Advances in biohydrogen production process: an approach towards commercialization. Int J Hydrogen Energy 34 (2009), 7349–7357.
    • (2009) Int J Hydrogen Energy , vol.34 , pp. 7349-7357
    • Das, D.1
  • 3
    • 55049115238 scopus 로고    scopus 로고
    • Advances in biological hydrogen production processes
    • [3] Das, Debabrata, Veziroglu, T. Nejat, Advances in biological hydrogen production processes. Int J Hydrogen Energy 33 (2008), 6046–6057.
    • (2008) Int J Hydrogen Energy , vol.33 , pp. 6046-6057
    • Das, D.1    Veziroglu, T.N.2
  • 4
    • 0343090235 scopus 로고
    • On hydrogen as fuel gas
    • [4] Suzuki, Y., On hydrogen as fuel gas. Int J Hydrogen Energy 7 (1982), 227–230.
    • (1982) Int J Hydrogen Energy , vol.7 , pp. 227-230
    • Suzuki, Y.1
  • 5
    • 4444228715 scopus 로고    scopus 로고
    • Hydrogen from biomass
    • [5] Nath, K., Das, D., Hydrogen from biomass. Curr Sci 85 (2003), 265–271.
    • (2003) Curr Sci , vol.85 , pp. 265-271
    • Nath, K.1    Das, D.2
  • 6
    • 38349162066 scopus 로고    scopus 로고
    • Biohydrogen as a renewable energy resource: prospects and potentials
    • [6] Kotay, Shireen Meher, Das, Debabrata, Biohydrogen as a renewable energy resource: prospects and potentials. Int J Hydrogen Energy 33 (2008), 258–263.
    • (2008) Int J Hydrogen Energy , vol.33 , pp. 258-263
    • Kotay, S.M.1    Das, D.2
  • 7
    • 0003963680 scopus 로고
    • Bioenergy technology – thermodynamics and costs
    • Wiley New York
    • [7] Boyles, D., Bioenergy technology – thermodynamics and costs. 1984, Wiley, New York.
    • (1984)
    • Boyles, D.1
  • 8
    • 0029763232 scopus 로고    scopus 로고
    • Hydrogen biotechnology: progress and prospects
    • [8] Benemann, J.R., Hydrogen biotechnology: progress and prospects. Nat Biotechnol 14 (1996), 1101–1103.
    • (1996) Nat Biotechnol , vol.14 , pp. 1101-1103
    • Benemann, J.R.1
  • 10
    • 0343462148 scopus 로고    scopus 로고
    • Hydrogen production by biological processes: a survey of literature
    • [10] Das, D., Veziroglu, T.N., Hydrogen production by biological processes: a survey of literature. Int J Hydrogen Energy 26 (2001), 13–28.
    • (2001) Int J Hydrogen Energy , vol.26 , pp. 13-28
    • Das, D.1    Veziroglu, T.N.2
  • 11
    • 0002193812 scopus 로고    scopus 로고
    • Microbial production of hydrogen: an overview
    • [11] Nandi, R., Sengupta, S., Microbial production of hydrogen: an overview. Crit Rev Microbiol 24 (1998), 61–84.
    • (1998) Crit Rev Microbiol , vol.24 , pp. 61-84
    • Nandi, R.1    Sengupta, S.2
  • 12
    • 84941787599 scopus 로고
    • Fermentative and photochemical production of hydrogen in algae
    • [12] GaGron, H., Rubin, J., Fermentative and photochemical production of hydrogen in algae. J Gen Physiol 26 (1942), 219–240.
    • (1942) J Gen Physiol , vol.26 , pp. 219-240
    • GaGron, H.1    Rubin, J.2
  • 14
    • 0032578518 scopus 로고    scopus 로고
    • [3Fe–4S] to [4Fe–4S] cluster conversion in Desulfovibrio fructosovorans [NiFe] hydrogenase by site-directed mutagenesis
    • [14] Rousset, M., Montet, Y., Guigliarelli, B., Forget, N., Asso, M., Bertrand, P., et al. [3Fe–4S] to [4Fe–4S] cluster conversion in Desulfovibrio fructosovorans [NiFe] hydrogenase by site-directed mutagenesis. Proc Natl Acad Sci USA 95 (1998), 1625–11630.
    • (1998) Proc Natl Acad Sci USA , vol.95 , pp. 1625-11630
    • Rousset, M.1    Montet, Y.2    Guigliarelli, B.3    Forget, N.4    Asso, M.5    Bertrand, P.6
  • 15
    • 84982109765 scopus 로고    scopus 로고
    • The prospect of purple non-sulfur photosynthetic bacteria for hydrogen production: the present state of art
    • [15] Basak, N., Das, D., The prospect of purple non-sulfur photosynthetic bacteria for hydrogen production: the present state of art. World J Microbiol Biotechnol 98 (2007), 1183–1190.
    • (2007) World J Microbiol Biotechnol , vol.98 , pp. 1183-1190
    • Basak, N.1    Das, D.2
  • 16
    • 0036827191 scopus 로고    scopus 로고
    • Biological hydrogen production: fundamentals and limiting processes
    • [16] Hallenbeck, P.C., Benemann, J.R., Biological hydrogen production: fundamentals and limiting processes. Int J Hydrogen Energy 27 (2002), 1185–1193.
    • (2002) Int J Hydrogen Energy , vol.27 , pp. 1185-1193
    • Hallenbeck, P.C.1    Benemann, J.R.2
  • 18
    • 0001090049 scopus 로고
    • Energetic efficiency of hydrogen photoevolution by algal water splitting
    • [18] Greenbaum, E., Energetic efficiency of hydrogen photoevolution by algal water splitting. Biophys J 54 (1988), 365–368.
    • (1988) Biophys J , vol.54 , pp. 365-368
    • Greenbaum, E.1
  • 19
    • 0001980282 scopus 로고
    • Simultaneous photoproduction of hydrogen and oxygen by Chlorella
    • [19] Spruit, C.J.P., Simultaneous photoproduction of hydrogen and oxygen by Chlorella. Meded Landbouwhogesch Wageningen 58 (1958), 1–17.
    • (1958) Meded Landbouwhogesch Wageningen , vol.58 , pp. 1-17
    • Spruit, C.J.P.1
  • 20
    • 0036827191 scopus 로고    scopus 로고
    • Biological hydrogen production; fundamentals and limiting processes
    • [20] Hallenbecka, Patrick C., Benemannb, John R., Biological hydrogen production; fundamentals and limiting processes. Int J Hydrogen Energy 27 (2002), 1185–1193.
    • (2002) Int J Hydrogen Energy , vol.27 , pp. 1185-1193
    • Hallenbecka, P.C.1    Benemannb, J.R.2
  • 21
    • 0021526164 scopus 로고
    • Stimulation of hydrogen photoproduction in algae by removal of oxygen by reagents that combine reversibly with oxygen
    • [21] Rosenkranz, A., Krasna, A.J., Stimulation of hydrogen photoproduction in algae by removal of oxygen by reagents that combine reversibly with oxygen. Biotechnol Bioeng 26 (1984), 1334–1342.
    • (1984) Biotechnol Bioeng , vol.26 , pp. 1334-1342
    • Rosenkranz, A.1    Krasna, A.J.2
  • 22
    • 0033759410 scopus 로고    scopus 로고
    • Sustained photobiological hydrogen gas production upon reversible inactivation of oxygen evolution in the green alga Chlamydomonas reinhardtii
    • [22] Melis, A., Zhang, L., Foestier, M., Ghirardi, M.L., Seibert, M., Sustained photobiological hydrogen gas production upon reversible inactivation of oxygen evolution in the green alga Chlamydomonas reinhardtii. Plant Physiol 122 (2000), 127–133.
    • (2000) Plant Physiol , vol.122 , pp. 127-133
    • Melis, A.1    Zhang, L.2    Foestier, M.3    Ghirardi, M.L.4    Seibert, M.5
  • 25
    • 0002532198 scopus 로고    scopus 로고
    • Strategies for improving oxygen tolerance of algal hydrogen production
    • J. Miyake T. Matsunaga A. San Pietro Pergamon, Elsevier Science Amsterdam
    • [25] Seibert, M., Flynn, T.Y., Ghirardi, M.L., Strategies for improving oxygen tolerance of algal hydrogen production. Miyake, J., Matsunaga, T., San Pietro, A., (eds.) Biohydrogen II, 2001, Pergamon, Elsevier Science, Amsterdam, 67–77.
    • (2001) Biohydrogen II , pp. 67-77
    • Seibert, M.1    Flynn, T.Y.2    Ghirardi, M.L.3
  • 26
    • 0344135450 scopus 로고
    • Hydrogen evolution by nitrogen-fixing Anabaena cylindrica cultures
    • [26] Benemann, J.R., Weare, N.M., Hydrogen evolution by nitrogen-fixing Anabaena cylindrica cultures. Science 184 (1974), 174–175.
    • (1974) Science , vol.184 , pp. 174-175
    • Benemann, J.R.1    Weare, N.M.2
  • 27
    • 0017593687 scopus 로고
    • Hydrogen production by nitrogen-starved cultures of Anabaena cylindrica
    • [27] Weissman, J.C., Benemann, J.R., Hydrogen production by nitrogen-starved cultures of Anabaena cylindrica. Appl Environ Microbiol 33 (1978), 123–131.
    • (1978) Appl Environ Microbiol , vol.33 , pp. 123-131
    • Weissman, J.C.1    Benemann, J.R.2
  • 28
    • 0018414553 scopus 로고
    • Solar energy conversion with hydrogen producing cultures of the blue-green alga, Anabaena cylindrica
    • [28] Hallenbeck, P.C., Kochian, L.V., Weissman, J.C., Benemann, J.R., Solar energy conversion with hydrogen producing cultures of the blue-green alga, Anabaena cylindrica. Biotechnol Bioeng Symp 8 (1978), 283–298.
    • (1978) Biotechnol Bioeng Symp , vol.8 , pp. 283-298
    • Hallenbeck, P.C.1    Kochian, L.V.2    Weissman, J.C.3    Benemann, J.R.4
  • 29
    • 84985735764 scopus 로고
    • Effects of nitrogen supply on hydrogen production by cultures of Anabaena cylindrica
    • [29] Miyamoto, K., Hallenbeck, P.C., Benemann, J.R., Effects of nitrogen supply on hydrogen production by cultures of Anabaena cylindrica. Biotechnol Bioeng 21 (1979), 1855–1860.
    • (1979) Biotechnol Bioeng , vol.21 , pp. 1855-1860
    • Miyamoto, K.1    Hallenbeck, P.C.2    Benemann, J.R.3
  • 30
    • 0000477211 scopus 로고
    • Solar energy conversion by nitrogen-limited cultures of Anabaena cylindrica
    • [30] Miyamoto, K., Hallenbeck, P.C., Benemann, J.R., Solar energy conversion by nitrogen-limited cultures of Anabaena cylindrica. J Ferment Technol 57 (1979), 287–293.
    • (1979) J Ferment Technol , vol.57 , pp. 287-293
    • Miyamoto, K.1    Hallenbeck, P.C.2    Benemann, J.R.3
  • 33
    • 0037199137 scopus 로고    scopus 로고
    • Sustained hydrogen photoproduction by Chlamydomonas reinhardtii: effects of culture parameters
    • [33] Kosourov, S., Tsygankov, A., Seibert, M., Ghirardi, M.L., Sustained hydrogen photoproduction by Chlamydomonas reinhardtii: effects of culture parameters. Biotechnol Bioeng 78 (2002), 731–740.
    • (2002) Biotechnol Bioeng , vol.78 , pp. 731-740
    • Kosourov, S.1    Tsygankov, A.2    Seibert, M.3    Ghirardi, M.L.4
  • 34
    • 0033759410 scopus 로고    scopus 로고
    • Sustained photobiological hydrogen gas production upon reversible inactivation of oxygen evolution in the green alga Chlamydomonas reinhardtii
    • [34] Melis, A., Zhang, L., Forestier, M., Ghirardi, M.L., Seibert, M., Sustained photobiological hydrogen gas production upon reversible inactivation of oxygen evolution in the green alga Chlamydomonas reinhardtii. Plant Physiol 122 (2000), 127–135.
    • (2000) Plant Physiol , vol.122 , pp. 127-135
    • Melis, A.1    Zhang, L.2    Forestier, M.3    Ghirardi, M.L.4    Seibert, M.5
  • 35
    • 84982131195 scopus 로고    scopus 로고
    • A preliminary assessment. Report to the International Energy Agency Hydrogen Program, Subtask B, Annex 10, Photoproduction of Hydrogen, IEA/H2/10/TR2-98
    • [35] Benemann JR. Processes analysis and economics of biophotolysis of water. A preliminary assessment. Report to the International Energy Agency Hydrogen Program, Subtask B, Annex 10, Photoproduction of Hydrogen, IEA/H2/10/TR2-98; 1998.
    • (1998) Processes analysis and economics of biophotolysis of water
    • Benemann, J.R.1
  • 36
    • 0000642932 scopus 로고    scopus 로고
    • The fossil record. Tracing the roots of the cyanobacterial lineage
    • B.A. Whitton M. Potts Kluwer Academic Publishers Dordrecht, The Netherlands
    • [36] Schopf, J.W., The fossil record. Tracing the roots of the cyanobacterial lineage. Whitton, B.A., Potts, M., (eds.) The ecology of cyanobacteria, 2000, Kluwer Academic Publishers, Dordrecht, The Netherlands.
    • (2000) The ecology of cyanobacteria
    • Schopf, J.W.1
  • 37
    • 0031692168 scopus 로고    scopus 로고
    • Mini-review: toward optimization of cyanobacteria as biotechnologically relevant producers of molecular hydrogen, a clean energy source
    • [37] Hansel, A., Lindblad, P., Mini-review: toward optimization of cyanobacteria as biotechnologically relevant producers of molecular hydrogen, a clean energy source. Appl Environ Microbiol 50 (1998), 153–160.
    • (1998) Appl Environ Microbiol , vol.50 , pp. 153-160
    • Hansel, A.1    Lindblad, P.2
  • 38
    • 0021840094 scopus 로고
    • The uptake and production of molecular hydrogen by unicellular cyanobacteria
    • [38] Howarth, D.C., Codd, G.A., The uptake and production of molecular hydrogen by unicellular cyanobacteria. J Gen Microbiol 131 (1985), 1561–1569.
    • (1985) J Gen Microbiol , vol.131 , pp. 1561-1569
    • Howarth, D.C.1    Codd, G.A.2
  • 39
    • 0002527327 scopus 로고    scopus 로고
    • Photohydrogen production and nitrogenase activity in some heterocystous cyanobacteria
    • [39] Masukawa, H., Nakamura, K., Mochimaru, M., Sakurai, H., Photohydrogen production and nitrogenase activity in some heterocystous cyanobacteria. BioHydrogen II (2001), 63–66.
    • (2001) BioHydrogen , vol.2 , pp. 63-66
    • Masukawa, H.1    Nakamura, K.2    Mochimaru, M.3    Sakurai, H.4
  • 40
    • 0344896607 scopus 로고    scopus 로고
    • Biohydrogen production: prospects and limitations to practical application
    • [40] Levin, D.B., Pitt, L., Love, M., Biohydrogen production: prospects and limitations to practical application. Int J Hydrogen Energy 29 (2004), 173–185.
    • (2004) Int J Hydrogen Energy , vol.29 , pp. 173-185
    • Levin, D.B.1    Pitt, L.2    Love, M.3
  • 41
    • 0031056356 scopus 로고    scopus 로고
    • Hydrogen metabolism of Anabaena variabilis in continuous cultures and under nutritional stress
    • [41] Sveshnikov, D.A., Sveshnikov, N.V., Rao, K.K., Hall, D.O., Hydrogen metabolism of Anabaena variabilis in continuous cultures and under nutritional stress. FEBS Lett 147 (1997), 297–301.
    • (1997) FEBS Lett , vol.147 , pp. 297-301
    • Sveshnikov, D.A.1    Sveshnikov, N.V.2    Rao, K.K.3    Hall, D.O.4
  • 42
    • 0036827173 scopus 로고    scopus 로고
    • Photobiological hydrogen production: photochemical efficiency and bioreactor design
    • [42] Akkerman, I., Janssen, M., Rocha, J., Wijffels, R.H., Photobiological hydrogen production: photochemical efficiency and bioreactor design. Int J Hydrogen Energy 27 (2002), 1195–1208.
    • (2002) Int J Hydrogen Energy , vol.27 , pp. 1195-1208
    • Akkerman, I.1    Janssen, M.2    Rocha, J.3    Wijffels, R.H.4
  • 44
    • 0030187438 scopus 로고    scopus 로고
    • Solar photoproduction of hydrogen
    • [44] Bolton, J.R., Solar photoproduction of hydrogen. Sol Energy 57 (1996), 37–50.
    • (1996) Sol Energy , vol.57 , pp. 37-50
    • Bolton, J.R.1
  • 45
    • 0031788793 scopus 로고    scopus 로고
    • Hydrogen photoproduction by Rhodobacter sphaeroides immobilised on polyurethane foam
    • [45] Fedorov, A.S., Tsygankov, A.A., Rao, K.K., Hall, D.O., Hydrogen photoproduction by Rhodobacter sphaeroides immobilised on polyurethane foam. Biotechnol Lett 20 (1998), 1007–1009.
    • (1998) Biotechnol Lett , vol.20 , pp. 1007-1009
    • Fedorov, A.S.1    Tsygankov, A.A.2    Rao, K.K.3    Hall, D.O.4
  • 46
    • 0028243569 scopus 로고
    • Photobioreactor with photosynthetic bacteria immobilized on porous glass for hydrogen photoproduction
    • [46] Tsygankov, A.A., Hirata, Y., Miyake, M., Asada, Y., Miyake, J., Photobioreactor with photosynthetic bacteria immobilized on porous glass for hydrogen photoproduction. J Ferment Bioeng 77 (1994), 575–578.
    • (1994) J Ferment Bioeng , vol.77 , pp. 575-578
    • Tsygankov, A.A.1    Hirata, Y.2    Miyake, M.3    Asada, Y.4    Miyake, J.5
  • 47
    • 0031973733 scopus 로고    scopus 로고
    • Actual and potential rates of hydrogen photoproduction by continuous culture of the purple non-sulphur bacteria Rhodobacter capsulatus
    • [47] Tsygankov, A.A., Fedorov, A.S., Laurinavichene, T.V., Gogotov, I.N., Rao, K.K., Hall, D.O., Actual and potential rates of hydrogen photoproduction by continuous culture of the purple non-sulphur bacteria Rhodobacter capsulatus. Appl Microbiol Biotechnol 49 (1998), 102–107.
    • (1998) Appl Microbiol Biotechnol , vol.49 , pp. 102-107
    • Tsygankov, A.A.1    Fedorov, A.S.2    Laurinavichene, T.V.3    Gogotov, I.N.4    Rao, K.K.5    Hall, D.O.6
  • 48
    • 0018397978 scopus 로고
    • Hydrogen production by the photosynthetic bacterium, Rhodospirillum rubrum
    • [48] Zurrer, H., Bachofen, R., Hydrogen production by the photosynthetic bacterium, Rhodospirillum rubrum. Appl Environ Microbiol 37 (1979), 789–793.
    • (1979) Appl Environ Microbiol , vol.37 , pp. 789-793
    • Zurrer, H.1    Bachofen, R.2
  • 49
    • 0029584653 scopus 로고
    • Rhodobacter sphaeroides RV cultivation and hydrogen production in a one- and two-stage chemostat
    • [49] Fascetti, E., Todini, O., Rhodobacter sphaeroides RV cultivation and hydrogen production in a one- and two-stage chemostat. Appl Microbiol Biotechnol 22 (1995), 300–305.
    • (1995) Appl Microbiol Biotechnol , vol.22 , pp. 300-305
    • Fascetti, E.1    Todini, O.2
  • 50
    • 0020150799 scopus 로고
    • Aspects of growth and hydrogen production of the photosynthetic bacterium Rhodospirillum rubrum in continuous culture
    • [50] Zurrer, H., Bachofen, R., Aspects of growth and hydrogen production of the photosynthetic bacterium Rhodospirillum rubrum in continuous culture. Biomass 2 (1982), 165–174.
    • (1982) Biomass , vol.2 , pp. 165-174
    • Zurrer, H.1    Bachofen, R.2
  • 51
    • 0021749022 scopus 로고
    • Hydrogen production by Rhodopseudomonas capsulata cells entrapped in carrageenan beads
    • [51] Francou, N., Vignais, P.M., Hydrogen production by Rhodopseudomonas capsulata cells entrapped in carrageenan beads. Biotechnol Lett 6 (1984), 639–644.
    • (1984) Biotechnol Lett , vol.6 , pp. 639-644
    • Francou, N.1    Vignais, P.M.2
  • 53
    • 0345707918 scopus 로고    scopus 로고
    • Application of immobilized phototrophic bacteria for simultaneous waste water treatment and hydrogen photoproduction
    • (in Russian)
    • [53] Tsygankov, A.A., Fedorov, A.S., Talipova, I.V., Laurinavichene, T.V., Miyake, J., Gogotov, I.N., et al. Application of immobilized phototrophic bacteria for simultaneous waste water treatment and hydrogen photoproduction. Appl Biochem Microbiol 34 (1998), 1–5 (in Russian).
    • (1998) Appl Biochem Microbiol , vol.34 , pp. 1-5
    • Tsygankov, A.A.1    Fedorov, A.S.2    Talipova, I.V.3    Laurinavichene, T.V.4    Miyake, J.5    Gogotov, I.N.6
  • 54
    • 0036827182 scopus 로고    scopus 로고
    • Sustainable fermentative biohydrogen: challenges for process optimization
    • [54] Hawkes, F.R., Dinsdale, R., Hawkes, D.L., Hussy, I., Sustainable fermentative biohydrogen: challenges for process optimization. Int J Hydrogen Energy 27 (2002), 1339–1347.
    • (2002) Int J Hydrogen Energy , vol.27 , pp. 1339-1347
    • Hawkes, F.R.1    Dinsdale, R.2    Hawkes, D.L.3    Hussy, I.4
  • 55
    • 0026554422 scopus 로고
    • Parameters affecting solvent production by Clostridium pasteurianum
    • [55] Dabrock, B., Bahl, H., Gottschalk, G., Parameters affecting solvent production by Clostridium pasteurianum. Appl Environ Microbiol 58 (1992), 1233–1239.
    • (1992) Appl Environ Microbiol , vol.58 , pp. 1233-1239
    • Dabrock, B.1    Bahl, H.2    Gottschalk, G.3
  • 56
    • 0000034463 scopus 로고
    • Hydrogen partial pressures in a thermophilic acetate-oxidizing methanogenic co-culture
    • [56] Lee, M.J., Zinder, S.H., Hydrogen partial pressures in a thermophilic acetate-oxidizing methanogenic co-culture. Appl Environ Microbiol 54 (1988), 1457–1461.
    • (1988) Appl Environ Microbiol , vol.54 , pp. 1457-1461
    • Lee, M.J.1    Zinder, S.H.2
  • 57
    • 12244253037 scopus 로고    scopus 로고
    • Substrate and product inhibition of hydrogen production by the extreme thermophile Caldicellulosiruptor saccharolyticus
    • [57] van Niel, E.W.J., Claassen, P.A.M., Stams, A.J.M., Substrate and product inhibition of hydrogen production by the extreme thermophile Caldicellulosiruptor saccharolyticus. Biotechnol Bioeng 81 (2002), 255–262.
    • (2002) Biotechnol Bioeng , vol.81 , pp. 255-262
    • van Niel, E.W.J.1    Claassen, P.A.M.2    Stams, A.J.M.3
  • 58
    • 0025372651 scopus 로고
    • The metabolism of hydrogen by extremely thermophilic sulphur-dependent bacteria
    • [58] Adams, M.W.W., The metabolism of hydrogen by extremely thermophilic sulphur-dependent bacteria. FEMS Microbiol Rev 75 (1990), 219–238.
    • (1990) FEMS Microbiol Rev , vol.75 , pp. 219-238
    • Adams, M.W.W.1
  • 59
    • 78651460327 scopus 로고    scopus 로고
    • Biohydrogen production from biomass and wastes via dark fermentation: a review
    • [59] Ntaikou, I., Antonopoulou, G., Lyberatos, G., Biohydrogen production from biomass and wastes via dark fermentation: a review. Waste Biomass Valorizat 1:1 (2010), 21–39.
    • (2010) Waste Biomass Valorizat , vol.1 , Issue.1 , pp. 21-39
    • Ntaikou, I.1    Antonopoulou, G.2    Lyberatos, G.3
  • 60
    • 0035666001 scopus 로고    scopus 로고
    • Modeling of pH response in continuous anaerobic acidogenesis by an artificial neural network
    • [60] Horiuchi, J., Kikuchi, S., Kobayashi, M., Kanno, T., Shimizu, T., Modeling of pH response in continuous anaerobic acidogenesis by an artificial neural network. Biochem Eng J 9 (2001), 199–204.
    • (2001) Biochem Eng J , vol.9 , pp. 199-204
    • Horiuchi, J.1    Kikuchi, S.2    Kobayashi, M.3    Kanno, T.4    Shimizu, T.5
  • 61
    • 33846188462 scopus 로고    scopus 로고
    • Biohydrogen production in a granular activated carbon anaerobic fluidized bed reactor
    • [61] Zhang, Z.P., Tay, J.H., Show, K.Y., Yan, R., Liang, D.T., Lee, D.J., et al. Biohydrogen production in a granular activated carbon anaerobic fluidized bed reactor. Int J Hydrogen Energy 32 (2007), 185–191.
    • (2007) Int J Hydrogen Energy , vol.32 , pp. 185-191
    • Zhang, Z.P.1    Tay, J.H.2    Show, K.Y.3    Yan, R.4    Liang, D.T.5    Lee, D.J.6
  • 62
    • 0037272707 scopus 로고    scopus 로고
    • H-2 production with anaerobic sludge using activated-carbon supported packed-bed bioreactors
    • [62] Lee, K.S., Lo, Y.S., Lo, Y.C., Lin, P.J., Chang, J.S., H-2 production with anaerobic sludge using activated-carbon supported packed-bed bioreactors. Biotechnol Lett 25 (2003), 133–138.
    • (2003) Biotechnol Lett , vol.25 , pp. 133-138
    • Lee, K.S.1    Lo, Y.S.2    Lo, Y.C.3    Lin, P.J.4    Chang, J.S.5
  • 63
    • 33746912798 scopus 로고    scopus 로고
    • Biological hydrogen production in a UASB reactor with granules. II: reactor performance in 3-year operation
    • [63] Yu, H.Q., Mu, Y., Biological hydrogen production in a UASB reactor with granules. II: reactor performance in 3-year operation. Biotechnol Bioeng 94 (2006), 988–995.
    • (2006) Biotechnol Bioeng , vol.94 , pp. 988-995
    • Yu, H.Q.1    Mu, Y.2
  • 64
    • 84866464493 scopus 로고    scopus 로고
    • Production of hydrogen from hemicellulose-rich fractions
    • [64] Czernik, S., French, R., Feik, C., Chornet, E., Production of hydrogen from hemicellulose-rich fractions. Abstr Pap Am Chem Soc 217 (1999), U808–U809.
    • (1999) Abstr Pap Am Chem Soc , vol.217 , pp. U808-U809
    • Czernik, S.1    French, R.2    Feik, C.3    Chornet, E.4
  • 65
    • 24944574228 scopus 로고    scopus 로고
    • Biohydrogen gas production from food processing and domestic wastewaters
    • [65] Van Ginkel, S.W., Oh, S.E., Logan, B.E., Biohydrogen gas production from food processing and domestic wastewaters. Int J Hydrogen Energy 30 (2005), 1535–1542.
    • (2005) Int J Hydrogen Energy , vol.30 , pp. 1535-1542
    • Van Ginkel, S.W.1    Oh, S.E.2    Logan, B.E.3
  • 67
    • 0142156069 scopus 로고    scopus 로고
    • Biohydrogen production from starch in wastewater under thermophilic condition
    • [67] Zhang, T., Liu, H., Fang, H.H.P., Biohydrogen production from starch in wastewater under thermophilic condition. J Environ Manage 69 (2003), 149–156.
    • (2003) J Environ Manage , vol.69 , pp. 149-156
    • Zhang, T.1    Liu, H.2    Fang, H.H.P.3
  • 68
    • 0029069944 scopus 로고
    • Biological production of hydrogen from cellulose by natural anaerobic microflora
    • [68] Ueno, Y., Kawai, T., Sato, S., Otsuka, S., Morimoto, M., Biological production of hydrogen from cellulose by natural anaerobic microflora. J Ferment Bioeng 79 (1995), 395–397.
    • (1995) J Ferment Bioeng , vol.79 , pp. 395-397
    • Ueno, Y.1    Kawai, T.2    Sato, S.3    Otsuka, S.4    Morimoto, M.5
  • 69
    • 13544269458 scopus 로고    scopus 로고
    • Continuous hydrogen production by the hyperthermophilic archaeon, Thermococcus kodakaraensis KOD1
    • [69] Kanai, T., Imanaka, H., Nakajima, A., Uwamori, K., Omori, Y., Fukui, T., et al. Continuous hydrogen production by the hyperthermophilic archaeon, Thermococcus kodakaraensis KOD1. J Biotechnol 116 (2005), 271–282.
    • (2005) J Biotechnol , vol.116 , pp. 271-282
    • Kanai, T.1    Imanaka, H.2    Nakajima, A.3    Uwamori, K.4    Omori, Y.5    Fukui, T.6
  • 70
    • 27944487847 scopus 로고    scopus 로고
    • Influence of culture parameters on biological hydrogen production by Clostridium saccharoperbutylacetonicum ATCC 27021
    • [70] Ferchichi, M., Crabbe, E., Hintz, W., Gil, G.H., Almadidy, A., Influence of culture parameters on biological hydrogen production by Clostridium saccharoperbutylacetonicum ATCC 27021. World J Microbiol Biotechnol 21 (2005), 855–862.
    • (2005) World J Microbiol Biotechnol , vol.21 , pp. 855-862
    • Ferchichi, M.1    Crabbe, E.2    Hintz, W.3    Gil, G.H.4    Almadidy, A.5
  • 71
    • 0008374127 scopus 로고    scopus 로고
    • Enhancement of hydrogen production by Enterobacter cloacae IIT-BT 08
    • [71] Kumar, N., Das, D., Enhancement of hydrogen production by Enterobacter cloacae IIT-BT 08. Process Biochem 35 (2000), 589–593.
    • (2000) Process Biochem , vol.35 , pp. 589-593
    • Kumar, N.1    Das, D.2
  • 72
    • 0036603109 scopus 로고    scopus 로고
    • Biological hydrogen production measured in batch anaerobic respirometers
    • [72] Logan, B.E., Oh, S.E., Kim, I.S., Van Ginkel, S., Biological hydrogen production measured in batch anaerobic respirometers. Environ Sci Technol 37 (2002), 2530–2535.
    • (2002) Environ Sci Technol , vol.37 , pp. 2530-2535
    • Logan, B.E.1    Oh, S.E.2    Kim, I.S.3    Van Ginkel, S.4
  • 73
    • 0034526761 scopus 로고    scopus 로고
    • Hydrogen fermentation of organic municipal wastes
    • [73] Noike, T., Mizuno, O., Hydrogen fermentation of organic municipal wastes. Water Sci Technol 42:12 (2000), 155–162.
    • (2000) Water Sci Technol , vol.42 , Issue.12 , pp. 155-162
    • Noike, T.1    Mizuno, O.2
  • 74
    • 0033744469 scopus 로고    scopus 로고
    • Characteristics of hydrogen production from bean curd manufacturing waste by anaerobic microflora
    • [74] Mizuno, O., Ohara, T., Shinya, M., Noike, T., Characteristics of hydrogen production from bean curd manufacturing waste by anaerobic microflora. Water Sci Technol 42 (2000), 345–350.
    • (2000) Water Sci Technol , vol.42 , pp. 345-350
    • Mizuno, O.1    Ohara, T.2    Shinya, M.3    Noike, T.4
  • 75
    • 27744451656 scopus 로고    scopus 로고
    • Influence of initial pH on hydrogen production from cheese whey
    • [75] Ferchichi, M., Crabbe, E., Gil, G.H., Hintz, W., Almadidy, A., Influence of initial pH on hydrogen production from cheese whey. J Biotechnol 120 (2005), 402–409.
    • (2005) J Biotechnol , vol.120 , pp. 402-409
    • Ferchichi, M.1    Crabbe, E.2    Gil, G.H.3    Hintz, W.4    Almadidy, A.5
  • 76
    • 0029844652 scopus 로고    scopus 로고
    • Hydrogen production from industrial wastewater by anaerobic microflora in chemostat culture
    • [76] Ueno, Y., Otsuka, S., Morimoto, M., Hydrogen production from industrial wastewater by anaerobic microflora in chemostat culture. J Ferment Bioeng 82 (1996), 194–197.
    • (1996) J Ferment Bioeng , vol.82 , pp. 194-197
    • Ueno, Y.1    Otsuka, S.2    Morimoto, M.3
  • 77
    • 0036827183 scopus 로고    scopus 로고
    • Hydrogen production from rice winery wastewater in an upflow anaerobic reactor by using mixed anaerobic cultures
    • [77] Yu, H., Zhu, Z., Hu, W., Zhang, H., Hydrogen production from rice winery wastewater in an upflow anaerobic reactor by using mixed anaerobic cultures. Int J Hydrogen Energy 27 (2002), 1359–1365.
    • (2002) Int J Hydrogen Energy , vol.27 , pp. 1359-1365
    • Yu, H.1    Zhu, Z.2    Hu, W.3    Zhang, H.4
  • 78
    • 0346934976 scopus 로고    scopus 로고
    • Hydrogen production from rice winery wastewater by using a continuously stirred reactor
    • [78] Yu, H.Q., Hu, Z.H., Hong, T.Q., Hydrogen production from rice winery wastewater by using a continuously stirred reactor. J Chem Eng Jpn 36 (2003), 1147–1151.
    • (2003) J Chem Eng Jpn , vol.36 , pp. 1147-1151
    • Yu, H.Q.1    Hu, Z.H.2    Hong, T.Q.3
  • 79
    • 0029342848 scopus 로고
    • Continuous hydrogen production from molasses by fermentation using urethane foam as a support of flocks
    • [79] Tanisho, S., Ishiwata, Y., Continuous hydrogen production from molasses by fermentation using urethane foam as a support of flocks. Int J Hydrogen Energy 20 (1995), 541–545.
    • (1995) Int J Hydrogen Energy , vol.20 , pp. 541-545
    • Tanisho, S.1    Ishiwata, Y.2
  • 80
    • 13544257119 scopus 로고    scopus 로고
    • Continuous fermentative hydrogen production from sucrose and sugarbeet
    • [80] Hussy, I., Hawkes, F.R., Dinsdale, R., Hawkes, D.L., Continuous fermentative hydrogen production from sucrose and sugarbeet. Int J Hydrogen Energy 30 (2005), 471–483.
    • (2005) Int J Hydrogen Energy , vol.30 , pp. 471-483
    • Hussy, I.1    Hawkes, F.R.2    Dinsdale, R.3    Hawkes, D.L.4
  • 81
    • 6944256522 scopus 로고    scopus 로고
    • H-2 production through anaerobic mixed culture: effect of batch S-0/X-0 and shock loading in CSTR
    • [81] Fan, K.S., Chen, Y.Y., H-2 production through anaerobic mixed culture: effect of batch S-0/X-0 and shock loading in CSTR. Chemosphere 57 (2004), 1059–1068.
    • (2004) Chemosphere , vol.57 , pp. 1059-1068
    • Fan, K.S.1    Chen, Y.Y.2
  • 83
    • 0036010991 scopus 로고    scopus 로고
    • Microbial production of hydrogen from starch-manufacturing wastes
    • [83] Yokoi, H., Maki, R., Hirose, J., Hayashi, S., Microbial production of hydrogen from starch-manufacturing wastes. Biomass Bioenergy 22 (2002), 389–395.
    • (2002) Biomass Bioenergy , vol.22 , pp. 389-395
    • Yokoi, H.1    Maki, R.2    Hirose, J.3    Hayashi, S.4
  • 84
    • 78049471874 scopus 로고    scopus 로고
    • Critical assessment of anaerobic processes for continuous biohydrogen production from organic wastewater
    • [84] Show, K.Y., Zhang, Z.P., Tay, J.H., Liang, T., Lee, D.J., Ren, N.Q., et al. Critical assessment of anaerobic processes for continuous biohydrogen production from organic wastewater. Int J Hydrogen Energy 35 (2010), 13350–13355.
    • (2010) Int J Hydrogen Energy , vol.35 , pp. 13350-13355
    • Show, K.Y.1    Zhang, Z.P.2    Tay, J.H.3    Liang, T.4    Lee, D.J.5    Ren, N.Q.6
  • 85
    • 0041828365 scopus 로고    scopus 로고
    • Influence of chemical nature of organic wastes on their conversion to hydrogen by heat-shock digested sludge
    • [85] Lay, J.J., Fan, K.S., Chang, J., Ku, C.H., Influence of chemical nature of organic wastes on their conversion to hydrogen by heat-shock digested sludge. Int J Hydrogen Energy 28 (2003), 1361–1367.
    • (2003) Int J Hydrogen Energy , vol.28 , pp. 1361-1367
    • Lay, J.J.1    Fan, K.S.2    Chang, J.3    Ku, C.H.4
  • 86
    • 26444582922 scopus 로고    scopus 로고
    • Semi-continuous solid substrate anaerobic reactors for H-2 production from organic waste: mesophilic versus thermophilic regime
    • [86] Valdez-Vazquez, I., Rios-Leal, E., Esparza-Garcia, F., Cecchi, F., Poggi-Varaldo, H.A., Semi-continuous solid substrate anaerobic reactors for H-2 production from organic waste: mesophilic versus thermophilic regime. Int J Hydrogen Energy 30 (2005), 1383–1391.
    • (2005) Int J Hydrogen Energy , vol.30 , pp. 1383-1391
    • Valdez-Vazquez, I.1    Rios-Leal, E.2    Esparza-Garcia, F.3    Cecchi, F.4    Poggi-Varaldo, H.A.5
  • 87
    • 9344266385 scopus 로고    scopus 로고
    • Feasibility of biohydrogen production by anaerobic co-digestion of food waste and sewage sludge
    • [87] Kim, S.H., Han, S.K., Shin, H.S., Feasibility of biohydrogen production by anaerobic co-digestion of food waste and sewage sludge. Int J Hydrogen Energy 29 (2004), 1607–1616.
    • (2004) Int J Hydrogen Energy , vol.29 , pp. 1607-1616
    • Kim, S.H.1    Han, S.K.2    Shin, H.S.3
  • 88
    • 0036378643 scopus 로고    scopus 로고
    • Effects of volatile fatty acids on a thermophilic anaerobic hydrogen fermentation process degrading peptone
    • [88] Cheng, S.S., Chang, S.M., Chen, S.T., Effects of volatile fatty acids on a thermophilic anaerobic hydrogen fermentation process degrading peptone. Water Sci Technol 46 (2002), 209–214.
    • (2002) Water Sci Technol , vol.46 , pp. 209-214
    • Cheng, S.S.1    Chang, S.M.2    Chen, S.T.3
  • 89
    • 2542475128 scopus 로고    scopus 로고
    • Enhanced biohydrogen production from sewage sludge with alkaline pretreatment
    • [89] Cai, M.L., Liu, J.X., Wei, Y.S., Enhanced biohydrogen production from sewage sludge with alkaline pretreatment. Environ Sci Technol 38 (2004), 3195–3202.
    • (2004) Environ Sci Technol , vol.38 , pp. 3195-3202
    • Cai, M.L.1    Liu, J.X.2    Wei, Y.S.3
  • 90
    • 0037430835 scopus 로고    scopus 로고
    • Producing hydrogen from wastewater sludge by Clostridium bifermentans
    • [90] Wang, C.C., Chang, C.W., Chu, C.P., Lee, D.J., Chang, B.V., Liao, C.S., Producing hydrogen from wastewater sludge by Clostridium bifermentans. J Biotechnol 102 (2003), 83–92.
    • (2003) J Biotechnol , vol.102 , pp. 83-92
    • Wang, C.C.1    Chang, C.W.2    Chu, C.P.3    Lee, D.J.4    Chang, B.V.5    Liao, C.S.6
  • 91
    • 67650257152 scopus 로고    scopus 로고
    • Buffer requirements for enhanced hydrogen production in acidogenic digestion of food wastes
    • [91] Zhu, H., Parker, W., Basnar, R., Proracki, A., Falletta, P., Béland, M., et al. Buffer requirements for enhanced hydrogen production in acidogenic digestion of food wastes. Bioresour Technol 100:21 (2009), 5097–5102.
    • (2009) Bioresour Technol , vol.100 , Issue.21 , pp. 5097-5102
    • Zhu, H.1    Parker, W.2    Basnar, R.3    Proracki, A.4    Falletta, P.5    Béland, M.6
  • 92
    • 33745033354 scopus 로고    scopus 로고
    • Continuous bio hydrogen production from citric acid wastewater via facultative anaerobic bacteria
    • [92] Yang, H., Shao, P., Lu, T., Shen, J., Wang, D., Xu, Z., et al. Continuous bio hydrogen production from citric acid wastewater via facultative anaerobic bacteria. Int J Hydrogen Energy 31 (2006), 1306–1313.
    • (2006) Int J Hydrogen Energy , vol.31 , pp. 1306-1313
    • Yang, H.1    Shao, P.2    Lu, T.3    Shen, J.4    Wang, D.5    Xu, Z.6
  • 93
    • 33744530528 scopus 로고    scopus 로고
    • The production of hydrogen by dark fermentation of municipal solid wastes and slaughterhouse waste: a two-phase process
    • [93] Gómez, X., Morán, V., Cuetos, M.J., Sánchez, M.E., The production of hydrogen by dark fermentation of municipal solid wastes and slaughterhouse waste: a two-phase process. J Power Sources 157 (2006), 727–732.
    • (2006) J Power Sources , vol.157 , pp. 727-732
    • Gómez, X.1    Morán, V.2    Cuetos, M.J.3    Sánchez, M.E.4
  • 94
    • 78049472764 scopus 로고    scopus 로고
    • Optimization of biohydrogen production from sweet sorghum syrup using statistical methods
    • [94] Saraphirom, P., Reungsang, A., Optimization of biohydrogen production from sweet sorghum syrup using statistical methods. Int J Hydrogen Energy 35:24 (2010), 13435–13444.
    • (2010) Int J Hydrogen Energy , vol.35 , Issue.24 , pp. 13435-13444
    • Saraphirom, P.1    Reungsang, A.2
  • 95
    • 34848839615 scopus 로고    scopus 로고
    • Biofuels generation from sweet sorghum: fermentative hydrogen production and anaerobic digestion of the remaining biomass
    • [95] Antonopoulou, G., Gavala, H.N., Skiadas, I.V., Angelopoulos, K., Lyberatos, G., Biofuels generation from sweet sorghum: fermentative hydrogen production and anaerobic digestion of the remaining biomass. Bioresour Technol 99 (2008), 110–119.
    • (2008) Bioresour Technol , vol.99 , pp. 110-119
    • Antonopoulou, G.1    Gavala, H.N.2    Skiadas, I.V.3    Angelopoulos, K.4    Lyberatos, G.5
  • 96
    • 77954824782 scopus 로고    scopus 로고
    • Effect of pH on continuous biohydrogen production from liquid swine manure with glucose supplement using an anaerobic sequencing batch reactor
    • [96] Wu, X., Yao, W., Zhu, J., Effect of pH on continuous biohydrogen production from liquid swine manure with glucose supplement using an anaerobic sequencing batch reactor. Int J Hydrogen Energy 35:13 (2010), 6592–6599.
    • (2010) Int J Hydrogen Energy , vol.35 , Issue.13 , pp. 6592-6599
    • Wu, X.1    Yao, W.2    Zhu, J.3
  • 97
    • 68349137608 scopus 로고    scopus 로고
    • Swine manure fermentation for hydrogen production
    • [97] Zhu, J., Li, Y., Wu, X., Miller, C., Chen, P., Ruan, R., Swine manure fermentation for hydrogen production. Bioresour Technol 100:22 (2009), 5472–5477.
    • (2009) Bioresour Technol , vol.100 , Issue.22 , pp. 5472-5477
    • Zhu, J.1    Li, Y.2    Wu, X.3    Miller, C.4    Chen, P.5    Ruan, R.6
  • 98
    • 52049087851 scopus 로고    scopus 로고
    • Fermentative hydrogen production in batch experiments using lactose, cheese whey and glucose: influence of initial substrate concentration and pH
    • [98] Gustavo, D.V., Felipe, A.M., Antonio de, L.R., Elías, R.F., Fermentative hydrogen production in batch experiments using lactose, cheese whey and glucose: influence of initial substrate concentration and pH. Int J Hydrogen Energy 33 (2008), 4989–4997.
    • (2008) Int J Hydrogen Energy , vol.33 , pp. 4989-4997
    • Gustavo, D.V.1    Felipe, A.M.2    Antonio de, L.R.3    Elías, R.F.4
  • 99
    • 84982184685 scopus 로고    scopus 로고
    • Enhanced biohydrogen production from glycerol using pretreated mixed culture
    • [99] Krishnasamy, Anbalagan, Sundaresan, Mohanraj, Shanmugam, Kodhaiyolii, Enhanced biohydrogen production from glycerol using pretreated mixed culture. Recent Adv Bioenergy Res 3 (2014), 263–271.
    • (2014) Recent Adv Bioenergy Res , vol.3 , pp. 263-271
    • Krishnasamy, A.1    Sundaresan, M.2    Shanmugam, K.3
  • 100
    • 78049386114 scopus 로고    scopus 로고
    • Biphasic production of hydrogen and methane from waste lactose in cyclicbatch reactors
    • [100] Banks, C.J., Zotova, E.A., Heaven, S., Biphasic production of hydrogen and methane from waste lactose in cyclicbatch reactors. J Clean Prod 18 (2010), S95–S104.
    • (2010) J Clean Prod , vol.18 , pp. S95-S104
    • Banks, C.J.1    Zotova, E.A.2    Heaven, S.3
  • 101
    • 52049090565 scopus 로고    scopus 로고
    • Syntrophic co-culture of aerobic Bacillus and anaerobic Clostridium for bio-fuels and bio-hydrogen production
    • [101] Chang, J., Chou, C., Ho, C., Chen, W., Lay, J., Huang, C., Syntrophic co-culture of aerobic Bacillus and anaerobic Clostridium for bio-fuels and bio-hydrogen production. Int J Hydrogen Energy 33 (2008), 5137–5146.
    • (2008) Int J Hydrogen Energy , vol.33 , pp. 5137-5146
    • Chang, J.1    Chou, C.2    Ho, C.3    Chen, W.4    Lay, J.5    Huang, C.6
  • 102
    • 77349101517 scopus 로고    scopus 로고
    • Optimization of conditions for hydrogen production from brewery wastewater by anaerobic sludge using desirability function approach
    • [102] Shi, X.Y., Jin, D.W., Sun, Q.Y., Li, W.W., Optimization of conditions for hydrogen production from brewery wastewater by anaerobic sludge using desirability function approach. Int J Hydrogen Energy 35:7 (2010), 1493–1498.
    • (2010) Int J Hydrogen Energy , vol.35 , Issue.7 , pp. 1493-1498
    • Shi, X.Y.1    Jin, D.W.2    Sun, Q.Y.3    Li, W.W.4
  • 103
    • 57149136279 scopus 로고    scopus 로고
    • Anaerobic digestion of the vinasses from the fermentation of Agave tequilana Weber to tequila: the effect of pH, temperature and hydraulic retention time on the production of hydrogen and methane
    • [103] Froylán, M.E.E., Carlos, P.O., Jose, N.C., Yolanda, G.G., André, B., Humberto, G.P., Anaerobic digestion of the vinasses from the fermentation of Agave tequilana Weber to tequila: the effect of pH, temperature and hydraulic retention time on the production of hydrogen and methane. Biomass Bioenergy 33 (2009), 14–20.
    • (2009) Biomass Bioenergy , vol.33 , pp. 14-20
    • Froylán, M.E.E.1    Carlos, P.O.2    Jose, N.C.3    Yolanda, G.G.4    André, B.5    Humberto, G.P.6
  • 104
    • 77955661708 scopus 로고    scopus 로고
    • Biohydrogen production from Tequila vinasses in an anaerobic sequencing batch reactor: effect of initial substrate concentration, temperature and hydraulic retention time
    • [104] Buitrón, G., Carvajal, C., Biohydrogen production from Tequila vinasses in an anaerobic sequencing batch reactor: effect of initial substrate concentration, temperature and hydraulic retention time. Bioresour Technol 101:23 (2010), 9071–9077.
    • (2010) Bioresour Technol , vol.101 , Issue.23 , pp. 9071-9077
    • Buitrón, G.1    Carvajal, C.2
  • 106
    • 73749084059 scopus 로고    scopus 로고
    • Enhancing biohydrogen production through sewage supplementation of composite vegetable based market waste
    • [106] Mohanakrishna, G., Kannaiah Goud, R., Venkata Mohan, S., Sarma, P.N., Enhancing biohydrogen production through sewage supplementation of composite vegetable based market waste. Int J Hydrogen Energy 35:2 (2010), 533–541.
    • (2010) Int J Hydrogen Energy , vol.35 , Issue.2 , pp. 533-541
    • Mohanakrishna, G.1    Kannaiah Goud, R.2    Venkata Mohan, S.3    Sarma, P.N.4
  • 107
    • 78149473855 scopus 로고    scopus 로고
    • Photo-fermentation of Rhodobacter sphaeroides for hydrogen production using lignocellulose-derived organic acids
    • [107] Zhu, Z., Shi, J., Zhou, Z., Hu, F., Bao, J., Photo-fermentation of Rhodobacter sphaeroides for hydrogen production using lignocellulose-derived organic acids. Proc Biochem 45:12 (2010), 1894–1898.
    • (2010) Proc Biochem , vol.45 , Issue.12 , pp. 1894-1898
    • Zhu, Z.1    Shi, J.2    Zhou, Z.3    Hu, F.4    Bao, J.5
  • 108
    • 77957702229 scopus 로고    scopus 로고
    • Anaerobic treatment of cassava stillage for hydrogen and methane production in continuously stirred tank reactor (CSTR) under high organic loading rate (OLR)
    • [108] Luo, G., Xie, L., Zou, Z., Wang, W., Zhou, Q., Shim, H., Anaerobic treatment of cassava stillage for hydrogen and methane production in continuously stirred tank reactor (CSTR) under high organic loading rate (OLR). Int J Hydrogen Energy 35 (2010), 11733–11737.
    • (2010) Int J Hydrogen Energy , vol.35 , pp. 11733-11737
    • Luo, G.1    Xie, L.2    Zou, Z.3    Wang, W.4    Zhou, Q.5    Shim, H.6
  • 109
    • 77950461579 scopus 로고    scopus 로고
    • Hydrogen production from cassava wastewater using an anaerobic sequencing batch reactor: effects of operational parameters, COD:N ratio, and organic acid composition
    • [109] Sreethawong, T., Chatsiriwatana, S., Rangsunvigit, P., Chavadej, S., Hydrogen production from cassava wastewater using an anaerobic sequencing batch reactor: effects of operational parameters, COD:N ratio, and organic acid composition. Int J Hydrogen Energy 35:9 (2010), 4092–4102.
    • (2010) Int J Hydrogen Energy , vol.35 , Issue.9 , pp. 4092-4102
    • Sreethawong, T.1    Chatsiriwatana, S.2    Rangsunvigit, P.3    Chavadej, S.4
  • 110
    • 77955662386 scopus 로고    scopus 로고
    • Biological hydrogen production from phenol-containing wastewater using Clostridium butyricum
    • [110] Tai, J., Adav, S.S., Su, A., Lee, D.J., Biological hydrogen production from phenol-containing wastewater using Clostridium butyricum. Int J Hydrogen Energy 35:24 (2010), 13345–13349.
    • (2010) Int J Hydrogen Energy , vol.35 , Issue.24 , pp. 13345-13349
    • Tai, J.1    Adav, S.S.2    Su, A.3    Lee, D.J.4
  • 111
    • 34248333429 scopus 로고    scopus 로고
    • Optimization of biohydrogen production from biodiesel wastes by Klebsiella pneumoniae
    • [111] Liu, F., Fang, B., Optimization of biohydrogen production from biodiesel wastes by Klebsiella pneumoniae. Biotechnol J 2 (2007), 374–380.
    • (2007) Biotechnol J , vol.2 , pp. 374-380
    • Liu, F.1    Fang, B.2
  • 112
    • 33744917517 scopus 로고    scopus 로고
    • Biohydrogen generation from palm oil mill effluent using anaerobic contact filter
    • [112] Vijayaraghavan, K., Ahmad, D., Biohydrogen generation from palm oil mill effluent using anaerobic contact filter. Int J Hydrogen Energy 31 (2006), 1284–1291.
    • (2006) Int J Hydrogen Energy , vol.31 , pp. 1284-1291
    • Vijayaraghavan, K.1    Ahmad, D.2
  • 113
    • 57249095833 scopus 로고    scopus 로고
    • A holistic approach to managing palm oil mill effluent (POME): biotechnological advances in the sustainable reuse of POME
    • [113] Wu, T.Y., Mohammad, A.W., Jahim, J.M.d., Anuar, N., A holistic approach to managing palm oil mill effluent (POME): biotechnological advances in the sustainable reuse of POME. Biotechnol Adv 27 (2009), 40–52.
    • (2009) Biotechnol Adv , vol.27 , pp. 40-52
    • Wu, T.Y.1    Mohammad, A.W.2    Jahim, J.M.D.3    Anuar, N.4
  • 114
    • 77951131799 scopus 로고    scopus 로고
    • An integrated system for hydrogen and methane production during landfill leachate treatment
    • [114] Hafez, H., George, N.G., Naggar, H.E., An integrated system for hydrogen and methane production during landfill leachate treatment. Int J Hydrogen Energy 35:10 (2010), 5010–5014.
    • (2010) Int J Hydrogen Energy , vol.35 , Issue.10 , pp. 5010-5014
    • Hafez, H.1    George, N.G.2    Naggar, H.E.3
  • 115
    • 54349123068 scopus 로고    scopus 로고
    • Biological hydrogen production from probiotic wastewater as substrate by selectively enriched anaerobic mixed microflora
    • [115] Sivaramakrishna, D., Sreekanth, D., Himabindu, V., Anjaneyulu, Y., Biological hydrogen production from probiotic wastewater as substrate by selectively enriched anaerobic mixed microflora. Renew Energy 34 (2009), 937–940.
    • (2009) Renew Energy , vol.34 , pp. 937-940
    • Sivaramakrishna, D.1    Sreekanth, D.2    Himabindu, V.3    Anjaneyulu, Y.4
  • 116
    • 84882514987 scopus 로고    scopus 로고
    • 2 by Rhodopseudomonas palustris (strain 6A) grown in pre-treated olive mill waste, under batch or semi-continuous regime
    • 2 by Rhodopseudomonas palustris (strain 6A) grown in pre-treated olive mill waste, under batch or semi-continuous regime. J Biotechnol, 150(1), 2010, 180.
    • (2010) J Biotechnol , vol.150 , Issue.1 , pp. 180
    • Ena, A.1    Pintucci, C.2    Carlozzi, P.3
  • 117
    • 77955300323 scopus 로고    scopus 로고
    • Photosynthetic bacterial growth and productivity under continuous illumination or diurnal cycles with olive mill waste water as feedstock
    • [117] Eroglu, E., Gunduz, U., Yucel, M., Eroglu, I., Photosynthetic bacterial growth and productivity under continuous illumination or diurnal cycles with olive mill waste water as feedstock. Int J Hydrogen Energy 35 (2010), 5293–5300.
    • (2010) Int J Hydrogen Energy , vol.35 , pp. 5293-5300
    • Eroglu, E.1    Gunduz, U.2    Yucel, M.3    Eroglu, I.4
  • 118
    • 79251611759 scopus 로고    scopus 로고
    • Hydrogen productivity of photosynthetic bacteria on dark fermenter effluent of potato steam peels hydrolysate
    • [118] Afsar, N., Özgür, E., Gürgan, M., Akköse, S., Yücel, M., Gündüz, U., et al. Hydrogen productivity of photosynthetic bacteria on dark fermenter effluent of potato steam peels hydrolysate. Int J Hydrogen Energy 36 (2011), 432–438.
    • (2011) Int J Hydrogen Energy , vol.36 , pp. 432-438
    • Afsar, N.1    Özgür, E.2    Gürgan, M.3    Akköse, S.4    Yücel, M.5    Gündüz, U.6
  • 119
    • 77954313558 scopus 로고    scopus 로고
    • Feasibility of biohydrogen production from tofu wastewater with glutamine auxotrophic mutant of Rhodobacter sphaeroides
    • [119] Zheng, G.H., Wang, L., Kang, Z.H., Feasibility of biohydrogen production from tofu wastewater with glutamine auxotrophic mutant of Rhodobacter sphaeroides. Renew Energy 35 (2010), 2910–2913.
    • (2010) Renew Energy , vol.35 , pp. 2910-2913
    • Zheng, G.H.1    Wang, L.2    Kang, Z.H.3
  • 120
    • 0036836357 scopus 로고    scopus 로고
    • Hydrogen production as a novel process of wastewater treatment—studies on tofu wastewater with entrapped R. sphaeroides and mutagenesis
    • [120] Zhu, H., Ueda, S., Asada, Y., Miyake, J., Hydrogen production as a novel process of wastewater treatment—studies on tofu wastewater with entrapped R. sphaeroides and mutagenesis. Int J Hydrogen Energy 27 (2002), 1349–1357.
    • (2002) Int J Hydrogen Energy , vol.27 , pp. 1349-1357
    • Zhu, H.1    Ueda, S.2    Asada, Y.3    Miyake, J.4
  • 121
    • 65949117861 scopus 로고    scopus 로고
    • Hydrogen production by combined dark and light fermentation of ground wheat solution
    • [121] Argun, H., Kargi, F., Kapdan, I.K., Hydrogen production by combined dark and light fermentation of ground wheat solution. Int J Hydrogen Energy 34 (2009), 4305–4311.
    • (2009) Int J Hydrogen Energy , vol.34 , pp. 4305-4311
    • Argun, H.1    Kargi, F.2    Kapdan, I.K.3
  • 122
    • 56449102456 scopus 로고    scopus 로고
    • Towards the integration of dark and photo fermentative waste treatment. 1. Hydrogen photoproduction by purple bacterium Rhodobacter capsulatus using potential products of starch fermentation
    • [122] Laurinavichene, T.V., Tekucheva, D.N., Laurinavichius, K.S., Ghirardi, M.L., Seibert, M., Tsygankov, A.A., Towards the integration of dark and photo fermentative waste treatment. 1. Hydrogen photoproduction by purple bacterium Rhodobacter capsulatus using potential products of starch fermentation. Int J Hydrogen Energy 33 (2008), 7020–7026.
    • (2008) Int J Hydrogen Energy , vol.33 , pp. 7020-7026
    • Laurinavichene, T.V.1    Tekucheva, D.N.2    Laurinavichius, K.S.3    Ghirardi, M.L.4    Seibert, M.5    Tsygankov, A.A.6
  • 123
    • 67650777769 scopus 로고    scopus 로고
    • Harnessing of biohydrogen from wastewater treatment using mixed fermentative consortia: process evaluation towards optimization
    • [123] Venkata Mohan, S., Harnessing of biohydrogen from wastewater treatment using mixed fermentative consortia: process evaluation towards optimization. Int J Hydrogen Energy 34 (2009), 7460–7474.
    • (2009) Int J Hydrogen Energy , vol.34 , pp. 7460-7474
    • Venkata Mohan, S.1
  • 124
    • 84900899877 scopus 로고    scopus 로고
    • Waste to renewable energy: a sustainable and green approach towards production of biohydrogen by acidogenic fermentation
    • S. Om H. Steve Springer
    • [124] Venkata Mohan, S., Waste to renewable energy: a sustainable and green approach towards production of biohydrogen by acidogenic fermentation. Om, S., Steve, H., (eds.) Sustainable biotechnology: renewable resources and new perspectives, 2010, Springer, 129–164.
    • (2010) Sustainable biotechnology: renewable resources and new perspectives , pp. 129-164
    • Venkata Mohan, S.1
  • 125
    • 64449083489 scopus 로고    scopus 로고
    • Influence of reactor configuration on fermentative hydrogen production during wastewater
    • [125] Lalit Babu, V., Venkata Mohan, S., Sarma, P.N., Influence of reactor configuration on fermentative hydrogen production during wastewater. Int J Hydrogen Energy 34 (2009), 3305–3312.
    • (2009) Int J Hydrogen Energy , vol.34 , pp. 3305-3312
    • Lalit Babu, V.1    Venkata Mohan, S.2    Sarma, P.N.3
  • 126
    • 34248671389 scopus 로고    scopus 로고
    • Biohydrogen production from chemical wastewater treatment by selectively enriched anaerobic mixed consortia in biofilm configured reactor operated in periodic discontinuous batch mode
    • [126] Venkata Mohan, S., Bhaskar, Y.V., Sarma, P.N., Biohydrogen production from chemical wastewater treatment by selectively enriched anaerobic mixed consortia in biofilm configured reactor operated in periodic discontinuous batch mode. Water Res 41 (2007), 2652–2664.
    • (2007) Water Res , vol.41 , pp. 2652-2664
    • Venkata Mohan, S.1    Bhaskar, Y.V.2    Sarma, P.N.3
  • 127
    • 55049114305 scopus 로고    scopus 로고
    • Self-immobilization of acidogenic mixed consortia on mesoporous material (SBA-15) and activated carbon to enhance fermentative hydrogen production
    • [127] Venkata Mohan, S., Mohanakrishna, G., Reddy, S.S., Raju, B.D., Rao, K.S., Sarma, P.N., Self-immobilization of acidogenic mixed consortia on mesoporous material (SBA-15) and activated carbon to enhance fermentative hydrogen production. Int J Hydrogen Energy 33 (2008), 6133–6142.
    • (2008) Int J Hydrogen Energy , vol.33 , pp. 6133-6142
    • Venkata Mohan, S.1    Mohanakrishna, G.2    Reddy, S.S.3    Raju, B.D.4    Rao, K.S.5    Sarma, P.N.6
  • 128
    • 34447109082 scopus 로고    scopus 로고
    • Anaerobic biohydrogen production from dairy wastewater treatment in sequencing batch reactor (AnSBR): effect of organic loading rate
    • [128] Venkata Mohan, S., Lalit Babu, V., Sarma, P.N., Anaerobic biohydrogen production from dairy wastewater treatment in sequencing batch reactor (AnSBR): effect of organic loading rate. Enzyme Microbial Technol 41:4 (2007), 506–515.
    • (2007) Enzyme Microbial Technol , vol.41 , Issue.4 , pp. 506-515
    • Venkata Mohan, S.1    Lalit Babu, V.2    Sarma, P.N.3
  • 129
    • 50849129601 scopus 로고    scopus 로고
    • Bio-electrochemical evaluation of fermentative hydrogen production process with the function of feeding pH
    • [129] Venkata Mohan, S., Lalit Babu, V., Srikanth, S., Sarma, P.N., Bio-electrochemical evaluation of fermentative hydrogen production process with the function of feeding pH. Int J Hydrogen Energy 33:17 (2008), 4533–4546.
    • (2008) Int J Hydrogen Energy , vol.33 , Issue.17 , pp. 4533-4546
    • Venkata Mohan, S.1    Lalit Babu, V.2    Srikanth, S.3    Sarma, P.N.4
  • 130
    • 84902263132 scopus 로고    scopus 로고
    • Biohydrogen production from crude glycerol by immobilized Klebsiella sp. TR17 in a UASB reactor and bacterial quantification under non-sterile conditions
    • [130] Chookaew, Teera, Sompong, O-Thong, Prasertsan, Poonsuk, Biohydrogen production from crude glycerol by immobilized Klebsiella sp. TR17 in a UASB reactor and bacterial quantification under non-sterile conditions. Int J Hydrogen Energy(39), 2014, 9580–9587.
    • (2014) Int J Hydrogen Energy , Issue.39 , pp. 9580-9587
    • Chookaew, T.1    Sompong, O.-T.2    Prasertsan, P.3
  • 131
    • 0030990856 scopus 로고    scopus 로고
    • Hydrogen production by immobilized cells of aciduric Enterobacter aerogenes strain HO-39
    • [131] Yokoi, H., Tokushige, T., Hirose, J., Hayashi, S., Takasaki, Y., Hydrogen production by immobilized cells of aciduric Enterobacter aerogenes strain HO-39. J Ferment Bioeng 83 (1997), 481–484.
    • (1997) J Ferment Bioeng , vol.83 , pp. 481-484
    • Yokoi, H.1    Tokushige, T.2    Hirose, J.3    Hayashi, S.4    Takasaki, Y.5
  • 132
    • 35248891922 scopus 로고    scopus 로고
    • Enhancing biohydrogen production from chemical wastewater treatment in anaerobic sequencing batch biofilm reactor (AnSBBR) by bioaugmenting with selectively enriched kanamycin resistant anaerobic mixed consortia
    • [132] Venkata Mohan, S., Mohanakrishna, G., Veer Raghuvulu, S., Sarma, P.N., Enhancing biohydrogen production from chemical wastewater treatment in anaerobic sequencing batch biofilm reactor (AnSBBR) by bioaugmenting with selectively enriched kanamycin resistant anaerobic mixed consortia. Int J Hydrogen Energy 32 (2007), 3284–3292.
    • (2007) Int J Hydrogen Energy , vol.32 , pp. 3284-3292
    • Venkata Mohan, S.1    Mohanakrishna, G.2    Veer Raghuvulu, S.3    Sarma, P.N.4
  • 133
    • 34447103137 scopus 로고    scopus 로고
    • Biohydrogen production from chemical wastewater as substrate by selectively enriched anaerobic mixed consortia: influence of fermentation pH and substrate composition
    • [133] Venkata Mohan, S., Bhaskar, Y.V., Krishna, T.M., Chandrasekhara Rao, N., Lalit Babu, V., Sarma, P.N., Biohydrogen production from chemical wastewater as substrate by selectively enriched anaerobic mixed consortia: influence of fermentation pH and substrate composition. Int J Hydrogen Energy 32 (2007), 2286–2295.
    • (2007) Int J Hydrogen Energy , vol.32 , pp. 2286-2295
    • Venkata Mohan, S.1    Bhaskar, Y.V.2    Krishna, T.M.3    Chandrasekhara Rao, N.4    Lalit Babu, V.5    Sarma, P.N.6
  • 134
    • 42749083548 scopus 로고    scopus 로고
    • Integration of acidogenic and methanogenic processes for simultaneous production of biohydrogen and methane from wastewater treatment
    • [134] Venkata Mohan, S., Mohankrishna, G., Sarma, P.N., Integration of acidogenic and methanogenic processes for simultaneous production of biohydrogen and methane from wastewater treatment. Int J Hydrogen Energy 33 (2008), 2156–2166.
    • (2008) Int J Hydrogen Energy , vol.33 , pp. 2156-2166
    • Venkata Mohan, S.1    Mohankrishna, G.2    Sarma, P.N.3
  • 135
    • 33750997299 scopus 로고    scopus 로고
    • Biohydrogen production from molasses by anaerobic fermentation with a pilot-scale bioreactor system
    • [135] Ren, N.Q., Li, J.Z., Li, B.Q., Wang, Y., Liu, S.R., Biohydrogen production from molasses by anaerobic fermentation with a pilot-scale bioreactor system. Int J Hydrogen Energy 31 (2006), 2147–2157.
    • (2006) Int J Hydrogen Energy , vol.31 , pp. 2147-2157
    • Ren, N.Q.1    Li, J.Z.2    Li, B.Q.3    Wang, Y.4    Liu, S.R.5
  • 136
    • 77950297064 scopus 로고    scopus 로고
    • Biohydrogen production in anaerobic fluidized bed reactors: effect of support material and hydraulic retention time
    • [136] Barros, A.R., Cavalcante de Amorim, E.L., Reis, C.M., Shida, G.M., Silva, E.L., Biohydrogen production in anaerobic fluidized bed reactors: effect of support material and hydraulic retention time. Int J Hydrogen Energy 35 (2010), 3379–3388.
    • (2010) Int J Hydrogen Energy , vol.35 , pp. 3379-3388
    • Barros, A.R.1    Cavalcante de Amorim, E.L.2    Reis, C.M.3    Shida, G.M.4    Silva, E.L.5
  • 137
    • 0344550384 scopus 로고    scopus 로고
    • Biohydrogen production using an up-flow anaerobic sludge blanket reactor
    • [137] Chang, F.Y., Lin, C.Y., Biohydrogen production using an up-flow anaerobic sludge blanket reactor. Int J Hydrogen Energy 29 (2004), 33–39.
    • (2004) Int J Hydrogen Energy , vol.29 , pp. 33-39
    • Chang, F.Y.1    Lin, C.Y.2
  • 138
    • 64749085304 scopus 로고    scopus 로고
    • Advances in fermentative biohydrogen production: the way forward
    • [138] Hallenbeck, P.C., Ghosh, D., Advances in fermentative biohydrogen production: the way forward. Trends Biotechnol 27 (2009), 287–297.
    • (2009) Trends Biotechnol , vol.27 , pp. 287-297
    • Hallenbeck, P.C.1    Ghosh, D.2
  • 139
    • 69349092984 scopus 로고    scopus 로고
    • Comparative assessment of decoupling of biomass and hydraulic retention times in hydrogen production bioreactors
    • [139] Hafez, H., Baghchehsaraee, B., Nakhla, G., Karamanev, D., Margaritis, A., El Naggar, H., Comparative assessment of decoupling of biomass and hydraulic retention times in hydrogen production bioreactors. Int J Hydrogen Energy 34 (2009), 7603–7611.
    • (2009) Int J Hydrogen Energy , vol.34 , pp. 7603-7611
    • Hafez, H.1    Baghchehsaraee, B.2    Nakhla, G.3    Karamanev, D.4    Margaritis, A.5    El Naggar, H.6
  • 140
    • 3042855672 scopus 로고    scopus 로고
    • Biological hydrogen production using a membrane bioreactor
    • Wiley Subscription Services, Inc.
    • [140] Oh, S.E., Iyer, P., Bruns, M.A., Logan, B.E., Biological hydrogen production using a membrane bioreactor. A Wiley company, vol. 87, 2004, Wiley Subscription Services, Inc., 119–127.
    • (2004) A Wiley company , vol.87 , pp. 119-127
    • Oh, S.E.1    Iyer, P.2    Bruns, M.A.3    Logan, B.E.4
  • 141
    • 33646071873 scopus 로고    scopus 로고
    • Fermentative hydrogen production and bacterial community structure in high-rate anaerobic bioreactors containing silicone-immobilized and self flocculated sludge
    • [141] Wu, S.Y., Hung, C.H., Lin, C.N., Chen, H.W., Lee, A.S., Chang, J.S., Fermentative hydrogen production and bacterial community structure in high-rate anaerobic bioreactors containing silicone-immobilized and self flocculated sludge. Biotechnol Bioeng 93 (2006), 934–946.
    • (2006) Biotechnol Bioeng , vol.93 , pp. 934-946
    • Wu, S.Y.1    Hung, C.H.2    Lin, C.N.3    Chen, H.W.4    Lee, A.S.5    Chang, J.S.6
  • 142
    • 0036827171 scopus 로고    scopus 로고
    • Biohydrogen production with fixed-bed bioreactors
    • [142] Chang, J.S., Lee, K.S., Lin, P.J., Biohydrogen production with fixed-bed bioreactors. Int J Hydrogen Energy 27 (2002), 1167–1174.
    • (2002) Int J Hydrogen Energy , vol.27 , pp. 1167-1174
    • Chang, J.S.1    Lee, K.S.2    Lin, P.J.3
  • 143
    • 78049364080 scopus 로고    scopus 로고
    • Bioreactor systems for thermophilic fermentative hydrogen production: evaluation and comparison of appropriate systems
    • [143] Peintner, C., Zeidan, A.A., Schnitzhofer, W., Bioreactor systems for thermophilic fermentative hydrogen production: evaluation and comparison of appropriate systems. J Clean Prod 18 (2010), S15–S22.
    • (2010) J Clean Prod , vol.18 , pp. S15-S22
    • Peintner, C.1    Zeidan, A.A.2    Schnitzhofer, W.3
  • 144
    • 40749114267 scopus 로고    scopus 로고
    • Biohydrogen production with anaerobic fluidized bed reactors—a comparison of biofilm-based and granule-based systems
    • [144] Zhang, Z.P., Show, K.Y., Tay, J.H., Liang, D.T., Lee, D.J., Biohydrogen production with anaerobic fluidized bed reactors—a comparison of biofilm-based and granule-based systems. Int J Hydrogen Energy 33 (2008), 1559–1564.
    • (2008) Int J Hydrogen Energy , vol.33 , pp. 1559-1564
    • Zhang, Z.P.1    Show, K.Y.2    Tay, J.H.3    Liang, D.T.4    Lee, D.J.5
  • 145
    • 7544221776 scopus 로고    scopus 로고
    • Operation strategies for biohydrogen production with a highrate anaerobic granular sludge bed bioreactor
    • [145] Lee, K.S., Lo, Y.S., Lo, Y.C., Lin, P.J., Chang, J.S., Operation strategies for biohydrogen production with a highrate anaerobic granular sludge bed bioreactor. Enyzme Microb Technol 35 (2004), 605–612.
    • (2004) Enyzme Microb Technol , vol.35 , pp. 605-612
    • Lee, K.S.1    Lo, Y.S.2    Lo, Y.C.3    Lin, P.J.4    Chang, J.S.5
  • 146
    • 16644362376 scopus 로고    scopus 로고
    • Thermophilic biohydrogen production from glucose with trickling biofilter
    • [146] Oh, Y.K., Kim, S.H., Kim, M.S., Park, S., Thermophilic biohydrogen production from glucose with trickling biofilter. Biotechnol Bioeng 88 (2004), 690–698.
    • (2004) Biotechnol Bioeng , vol.88 , pp. 690-698
    • Oh, Y.K.1    Kim, S.H.2    Kim, M.S.3    Park, S.4
  • 147
    • 65949114885 scopus 로고    scopus 로고
    • Photofermentative hydrogen production using purple non-sulfur bacteria Rhodobacter sphaeroides O.U.001 in an annular photobioreactor: a case study
    • [147] Basak, N., Das, D., Photofermentative hydrogen production using purple non-sulfur bacteria Rhodobacter sphaeroides O.U.001 in an annular photobioreactor: a case study. Biomass Bioenergy 33 (2010), 911–919.
    • (2010) Biomass Bioenergy , vol.33 , pp. 911-919
    • Basak, N.1    Das, D.2
  • 148
    • 33746771022 scopus 로고    scopus 로고
    • Enhancing phototropic hydrogen production by solid-carrier assisted fermentation and internal optical-fiber illumination
    • [148] Chen, C.Y., Chang, J.S., Enhancing phototropic hydrogen production by solid-carrier assisted fermentation and internal optical-fiber illumination. Proc Biochem 41 (2006), 2041–2049.
    • (2006) Proc Biochem , vol.41 , pp. 2041-2049
    • Chen, C.Y.1    Chang, J.S.2
  • 149
    • 33746913440 scopus 로고    scopus 로고
    • Efficient hydrogen production using a multi-layered photobioreactor and a photosynthetic bacterium mutant with reduced pigment
    • [149] Kondo, T., Wakayama, T., Miyake, J., Efficient hydrogen production using a multi-layered photobioreactor and a photosynthetic bacterium mutant with reduced pigment. Int J Hydrogen Energy 31 (2006), 1522–1526.
    • (2006) Int J Hydrogen Energy , vol.31 , pp. 1522-1526
    • Kondo, T.1    Wakayama, T.2    Miyake, J.3
  • 150
    • 20044370112 scopus 로고    scopus 로고
    • Electrochemically assisted microbial production of hydrogen from acetate
    • [150] Liu, H., Grot, S., Logan, B.E., Electrochemically assisted microbial production of hydrogen from acetate. Environ Sci Technol 39 (2005), 4317–4320.
    • (2005) Environ Sci Technol , vol.39 , pp. 4317-4320
    • Liu, H.1    Grot, S.2    Logan, B.E.3
  • 151
    • 77953127540 scopus 로고    scopus 로고
    • Hydrogen production from glycerol in a membraneless microbial electrolysis cell
    • [151] Escapa, A., Manuel, M.F., Moran, A., Gomez, X., Guiot, S.R., Tartakovsky, B., Hydrogen production from glycerol in a membraneless microbial electrolysis cell. Energy Fuels 23 (2009), 4612–4618.
    • (2009) Energy Fuels , vol.23 , pp. 4612-4618
    • Escapa, A.1    Manuel, M.F.2    Moran, A.3    Gomez, X.4    Guiot, S.R.5    Tartakovsky, B.6
  • 152
    • 55349089542 scopus 로고    scopus 로고
    • An MEC-MFC-coupled system for biohydrogen production from acetate
    • [152] Sun, M., Sheng, G.P., Zhang, L., Xia, C.R., Mu, Z.X., Liu, X.W., et al. An MEC-MFC-coupled system for biohydrogen production from acetate. Environ Sci Technol 42 (2008), 8095–8100.
    • (2008) Environ Sci Technol , vol.42 , pp. 8095-8100
    • Sun, M.1    Sheng, G.P.2    Zhang, L.3    Xia, C.R.4    Mu, Z.X.5    Liu, X.W.6
  • 153
    • 77950386217 scopus 로고    scopus 로고
    • Challenges in developing biohydrogen as a sustainable energy source: implications for a research agenda
    • [153] Brentner, L.B., Peccia, J., Zimmerman, J.B., Challenges in developing biohydrogen as a sustainable energy source: implications for a research agenda. Environ Sci Technol 44 (2010), 2243–2254.
    • (2010) Environ Sci Technol , vol.44 , pp. 2243-2254
    • Brentner, L.B.1    Peccia, J.2    Zimmerman, J.B.3
  • 154
    • 33645973272 scopus 로고    scopus 로고
    • Biohydrogen-production from beer lees biomass by cow dung compost
    • [154] Fan, Y., Zhang, G., Guo, X., Xing, Y., Fan, M., Biohydrogen-production from beer lees biomass by cow dung compost. Biomass Bioenergy 30 (2006), 493–496.
    • (2006) Biomass Bioenergy , vol.30 , pp. 493-496
    • Fan, Y.1    Zhang, G.2    Guo, X.3    Xing, Y.4    Fan, M.5
  • 155
    • 34848880157 scopus 로고    scopus 로고
    • Effect of various pretreatment methods on anaerobic mixed microflora to enhance biohydrogen production utilizing dairy wastewater as substrate
    • [155] Venkata Mohan, S., Lalit Babu, V., Sarma, P.N., Effect of various pretreatment methods on anaerobic mixed microflora to enhance biohydrogen production utilizing dairy wastewater as substrate. Bioresour Technol 99 (2008), 59–67.
    • (2008) Bioresour Technol , vol.99 , pp. 59-67
    • Venkata Mohan, S.1    Lalit Babu, V.2    Sarma, P.N.3
  • 156
    • 33748444167 scopus 로고    scopus 로고
    • Evaluation of alternative methods of preparing hydrogen producing seeds from digested wastewater sludge
    • [156] Zhu, H., Beland, M., Evaluation of alternative methods of preparing hydrogen producing seeds from digested wastewater sludge. Int J Hydrogen Energy 31 (2006), 1980–1988.
    • (2006) Int J Hydrogen Energy , vol.31 , pp. 1980-1988
    • Zhu, H.1    Beland, M.2
  • 157
    • 77957273938 scopus 로고    scopus 로고
    • Insight into the dehydrogenase catalyzed redox reactions and electron discharge pattern during fermentative hydrogen production
    • [157] Venkata Mohan, S., Srikanth, S., Lenin Babu, M., Sarma, P.N., Insight into the dehydrogenase catalyzed redox reactions and electron discharge pattern during fermentative hydrogen production. Bioresour Technol 101 (2010), 1826–1833.
    • (2010) Bioresour Technol , vol.101 , pp. 1826-1833
    • Venkata Mohan, S.1    Srikanth, S.2    Lenin Babu, M.3    Sarma, P.N.4
  • 158
    • 0035892791 scopus 로고    scopus 로고
    • Biohydrogen production as a function of pH and substrate concentration
    • [158] van Ginkel, S., Sung, S.W., Lay, J.J., Biohydrogen production as a function of pH and substrate concentration. Environ Sci Technol 35 (2001), 4726–4730.
    • (2001) Environ Sci Technol , vol.35 , pp. 4726-4730
    • van Ginkel, S.1    Sung, S.W.2    Lay, J.J.3
  • 159
    • 58149289455 scopus 로고    scopus 로고
    • Continuous hydrogen production from glucose by using extreme thermophilic anaerobic microflora
    • [159] Yokoyama, H., Ohmori, H., Waki, M., Ogino, A., Tanaka, Y., Continuous hydrogen production from glucose by using extreme thermophilic anaerobic microflora. J Biosci Bioeng 107 (2009), 64–66.
    • (2009) J Biosci Bioeng , vol.107 , pp. 64-66
    • Yokoyama, H.1    Ohmori, H.2    Waki, M.3    Ogino, A.4    Tanaka, Y.5
  • 160
    • 48449107041 scopus 로고    scopus 로고
    • Biohydrogen production from cattle wastewater by enriched anaerobic mixed consortia: influence of fermentation temperature and pH
    • [160] Tang, G.L., Huang, J., Sun, Z.J., Tang, Q.Q., Yan, C.H., Liu, G.Q., et al. Biohydrogen production from cattle wastewater by enriched anaerobic mixed consortia: influence of fermentation temperature and pH. J Biosci Bioeng 106 (2008), 80–87.
    • (2008) J Biosci Bioeng , vol.106 , pp. 80-87
    • Tang, G.L.1    Huang, J.2    Sun, Z.J.3    Tang, Q.Q.4    Yan, C.H.5    Liu, G.Q.6
  • 161
    • 58549092968 scopus 로고    scopus 로고
    • Factors influencing fermentative hydrogen production: a review
    • [161] Wang, J., Wan, W., Factors influencing fermentative hydrogen production: a review. Int J Hydrogen Energy 34 (2009), 799–811.
    • (2009) Int J Hydrogen Energy , vol.34 , pp. 799-811
    • Wang, J.1    Wan, W.2
  • 162
    • 44449096016 scopus 로고    scopus 로고
    • Effect of substrate loading rate of chemical wastewater on fermentative biohydrogen production in biofilm configured sequencing batch reactor
    • [162] Vijaya Bhaskar, Y., Venkata Mohan, S., Sarma, P.N., Effect of substrate loading rate of chemical wastewater on fermentative biohydrogen production in biofilm configured sequencing batch reactor. Bioresour Technol 99 (2008), 6941–6948.
    • (2008) Bioresour Technol , vol.99 , pp. 6941-6948
    • Vijaya Bhaskar, Y.1    Venkata Mohan, S.2    Sarma, P.N.3
  • 163
    • 2342470161 scopus 로고    scopus 로고
    • Extracting hydrogen and electricity from renewable resources
    • [163] Logan, B.E., Extracting hydrogen and electricity from renewable resources. Environ Sci Technol 38 (2004), 160A–167A.
    • (2004) Environ Sci Technol , vol.38 , pp. 160A-167A
    • Logan, B.E.1
  • 164
    • 33748564008 scopus 로고    scopus 로고
    • Microbial fuel cells – challenges and applications
    • [164] Logan, B.E., Regan, J.M., Microbial fuel cells – challenges and applications. Environ Sci Technol 40 (2006), 5172–5180.
    • (2006) Environ Sci Technol , vol.40 , pp. 5172-5180
    • Logan, B.E.1    Regan, J.M.2
  • 165
    • 0034764035 scopus 로고    scopus 로고
    • Microbial community in anaerobic hydrogen-producing microflora enriched from sludge compost
    • U.S. Department of Energy, 2007. Hydrogen, Fuel Cells and Infrastructure
    • [165] Ueno, Y., Haruta, S., Ishii, M., Igarashi, Y., Microbial community in anaerobic hydrogen-producing microflora enriched from sludge compost. Appl Microbiol Biotechnol 57 (2001), 555–562 U.S. Department of Energy, 2007. Hydrogen, Fuel Cells and Infrastructure.
    • (2001) Appl Microbiol Biotechnol , vol.57 , pp. 555-562
    • Ueno, Y.1    Haruta, S.2    Ishii, M.3    Igarashi, Y.4
  • 166
    • 33746900961 scopus 로고    scopus 로고
    • Dark hydrogen fermentation
    • J.H. Reith R.H. Wijffels H. Barten Dutch Biological Hydrogen Foundation The Hague, The Netherlands
    • [166] de Vrije, T., Claasen, P.A.M., Dark hydrogen fermentation. Reith, J.H., Wijffels, R.H., Barten, H., (eds.) Bio-methane and bio-hydrogen, 2003, Dutch Biological Hydrogen Foundation, The Hague, The Netherlands, 103–123.
    • (2003) Bio-methane and bio-hydrogen , pp. 103-123
    • de Vrije, T.1    Claasen, P.A.M.2
  • 167
    • 84982120495 scopus 로고    scopus 로고
    • Biohydrogen production from industrial effluents. Biofuels: alternative feedstocks and conversion processes
    • [167] Venkata Mohan, S., Mohanakrishna, G., Srikanth, S., Biohydrogen production from industrial effluents. Biofuels: alternative feedstocks and conversion processes. 2011, 467–479.
    • (2011) , pp. 467-479
    • Venkata Mohan, S.1    Mohanakrishna, G.2    Srikanth, S.3
  • 168
    • 0034612342 scopus 로고    scopus 로고
    • One-step inactivation of chromosomal genes in Escherichia coli K-12 using PCR products
    • [168] Datsenko, K.A., Wanner, B.L., One-step inactivation of chromosomal genes in Escherichia coli K-12 using PCR products. Proc Natl Acad Sci USA 97 (2000), 6640–6645.
    • (2000) Proc Natl Acad Sci USA , vol.97 , pp. 6640-6645
    • Datsenko, K.A.1    Wanner, B.L.2
  • 170
    • 84982134823 scopus 로고    scopus 로고
    • Biomass to biohydrogen: a successful path
    • [170] Urja, Akshay, Biomass to biohydrogen: a successful path. 2014 .
    • (2014)
    • Urja, A.1
  • 171
    • 77954313440 scopus 로고    scopus 로고
    • Techno-economic analysis of two-step biological process producing hydrogen and methane
    • [171] Ljunggren, M., Zacchi, G., Techno-economic analysis of two-step biological process producing hydrogen and methane. Bioresour Technol 101:20 (2010), 7780–7788.
    • (2010) Bioresour Technol , vol.101 , Issue.20 , pp. 7780-7788
    • Ljunggren, M.1    Zacchi, G.2
  • 172
    • 0031962975 scopus 로고    scopus 로고
    • Efficiency of sunlight utilization: tubular versus flat photobioreactors
    • [172] Tredici, M.R., Zittelli, G.C., Efficiency of sunlight utilization: tubular versus flat photobioreactors. Biotechnol Bioeng 57 (1998), 187–197.
    • (1998) Biotechnol Bioeng , vol.57 , pp. 187-197
    • Tredici, M.R.1    Zittelli, G.C.2
  • 173
    • 54349098275 scopus 로고    scopus 로고
    • Anaerobic biotechnology for bioenergy production: principles and applications
    • John Wiley & Sons, Inc. Ames, Iowa, United States
    • [173] Khanal, S.K., Anaerobic biotechnology for bioenergy production: principles and applications. 2008, John Wiley & Sons, Inc., Ames, Iowa, United States.
    • (2008)
    • Khanal, S.K.1
  • 174
    • 84871953693 scopus 로고    scopus 로고
    • Microbiological handbook for biogas plants
    • [174] Schnurer, A., Jarvis, A., Microbiological handbook for biogas plants. 2009.
    • (2009)
    • Schnurer, A.1    Jarvis, A.2
  • 175
    • 84982184768 scopus 로고    scopus 로고
    • Biogas production, upgradation and slurry management
    • Narosa Publication [V.K. Vijay]
    • [175] Popli, K.S., Biogas production, upgradation and slurry management. 2012, Narosa Publication, 109–113 [V.K. Vijay].
    • (2012) , pp. 109-113
    • Popli, K.S.1
  • 176
    • 84886099783 scopus 로고    scopus 로고
    • Performance of a biogas upgrading process based on alkali absorption with regeneration using air pollution control residues
    • [176] Baciocchi, Renato, Carnevale, Ennio, Costa, Giulia, Gavasci, Renato, Lombardi, Lidia, Olivieri, Tommaso, et al. Performance of a biogas upgrading process based on alkali absorption with regeneration using air pollution control residues. Waste Manage, 2013, 2694–2705.
    • (2013) Waste Manage , pp. 2694-2705
    • Baciocchi, R.1    Carnevale, E.2    Costa, G.3    Gavasci, R.4    Lombardi, L.5    Olivieri, T.6
  • 177
    • 79953284145 scopus 로고    scopus 로고
    • Techniques for transformation of biogas to biomethane
    • [177] Ryckebosch, E., Drouillon, M., Vervaeren, H., Techniques for transformation of biogas to biomethane. Biomass Bioenergy 35 (2011), 1633–1645.
    • (2011) Biomass Bioenergy , vol.35 , pp. 1633-1645
    • Ryckebosch, E.1    Drouillon, M.2    Vervaeren, H.3
  • 178
    • 79952073544 scopus 로고    scopus 로고
    • An evaluation of the policy and techno-economic factors affecting the potential for biogas upgrading for transport fuel use in the UK
    • [178] Patterson, T., Esteves, S., Dinsdale, R., Guwy, A., An evaluation of the policy and techno-economic factors affecting the potential for biogas upgrading for transport fuel use in the UK. Energy Policy 39 (2011), 1806–1816.
    • (2011) Energy Policy , vol.39 , pp. 1806-1816
    • Patterson, T.1    Esteves, S.2    Dinsdale, R.3    Guwy, A.4
  • 181
    • 84893046059 scopus 로고    scopus 로고
    • Biogas as a sustainable energy source for developing countries: opportunities and challenges
    • [181] Surendra, K.C., Takara, Devin, Hashimoto, Andrew G., Khanal, Samir Kumar, Biogas as a sustainable energy source for developing countries: opportunities and challenges. Renew Sustain Energy Rev 31 (2014), 846–859.
    • (2014) Renew Sustain Energy Rev , vol.31 , pp. 846-859
    • Surendra, K.C.1    Takara, D.2    Hashimoto, A.G.3    Khanal, S.K.4
  • 182
    • 84887178973 scopus 로고    scopus 로고
    • Homoacetogenesis: a potentially underappreciated carbon pathway in peatlands
    • [182] Ye, R., Scott, B., Jason, K., Jin, Q., Brendan, B., Homoacetogenesis: a potentially underappreciated carbon pathway in peatlands. Soil Biol Biochem, 2014, 385–391.
    • (2014) Soil Biol Biochem , pp. 385-391
    • Ye, R.1    Scott, B.2    Jason, K.3    Jin, Q.4    Brendan, B.5
  • 183
    • 0345469992 scopus 로고
    • The methane fermentation
    • H. Henkelkian N.C. Dondero John Wiley and Sons, Inc. New York, United States
    • [183] McCarty, P.L., The methane fermentation. Henkelkian, H., Dondero, N.C., (eds.) Principles and application in aquatic microbiology, 1964, John Wiley and Sons, Inc., New York, United States.
    • (1964) Principles and application in aquatic microbiology
    • McCarty, P.L.1
  • 184
    • 26844521700 scopus 로고    scopus 로고
    • The microbiology of anaerobic digesters
    • John Wiley and Sons Inc. New Jersey, United States
    • [184] Gerardi, M.H., The microbiology of anaerobic digesters. 2003, John Wiley and Sons Inc., New Jersey, United States.
    • (2003)
    • Gerardi, M.H.1
  • 185
    • 85037103817 scopus 로고    scopus 로고
    • Methane fermentation process as anaerobic digestion of biomass: transformations, stages and microorganisms
    • [185] Zieminski, K., Frac, M., Methane fermentation process as anaerobic digestion of biomass: transformations, stages and microorganisms. Afr J Biotechnol 11 (2012), 4127–4139.
    • (2012) Afr J Biotechnol , vol.11 , pp. 4127-4139
    • Zieminski, K.1    Frac, M.2
  • 186
    • 85043091942 scopus 로고    scopus 로고
    • Industrial waste treatment handbook
    • 2nd ed. Butterworth-Heinemann Oxford
    • [186] Woodard, F., Industrial waste treatment handbook. 2nd ed., 2006, Butterworth-Heinemann, Oxford.
    • (2006)
    • Woodard, F.1
  • 187
    • 0030871461 scopus 로고    scopus 로고
    • Energetics of syntrophic cooperation in methanogenic degradation
    • [187] Schink, B., Energetics of syntrophic cooperation in methanogenic degradation. Microbiol Mol Biol Rev 61 (1997), 262–280.
    • (1997) Microbiol Mol Biol Rev , vol.61 , pp. 262-280
    • Schink, B.1
  • 188
    • 0029802039 scopus 로고    scopus 로고
    • Temperature regulation of anaerobic degradation of organic matter
    • [188] Westermann, P., Temperature regulation of anaerobic degradation of organic matter. World J Microbiol Biotechnol 12 (1996), 497–503.
    • (1996) World J Microbiol Biotechnol , vol.12 , pp. 497-503
    • Westermann, P.1
  • 189
    • 0442311929 scopus 로고    scopus 로고
    • Comparative study of economics of different models of family size biogas plants for state of Punjab, India
    • [189] Singh, K.J., Sooch, S.S., Comparative study of economics of different models of family size biogas plants for state of Punjab, India. Energy Convers Manage 45 (2004), 1329–1341.
    • (2004) Energy Convers Manage , vol.45 , pp. 1329-1341
    • Singh, K.J.1    Sooch, S.S.2
  • 190
    • 84858281628 scopus 로고    scopus 로고
    • Production of liquid biogas, LPG, with cryogenic and conventional upgrading technology
    • [190] Johansson, Nina, Production of liquid biogas, LPG, with cryogenic and conventional upgrading technology. 2008.
    • (2008)
    • Johansson, N.1
  • 191
    • 84982185708 scopus 로고    scopus 로고
    • Consumo de energia e aquecimento do planeta: Análise do mecanismo de desenvolvimento limpo (MDL) do Proto-colo de Quioto. Case studies
    • Post-graduate Engineering Programs Coordination (COPPE) Rio de Janeiro
    • [191] Muylaert, M.S., Sala, J., de Freitas, M.A.V., Consumo de energia e aquecimento do planeta: Análise do mecanismo de desenvolvimento limpo (MDL) do Proto-colo de Quioto. Case studies. 2000, Post-graduate Engineering Programs Coordination (COPPE), Rio de Janeiro.
    • (2000)
    • Muylaert, M.S.1    Sala, J.2    de Freitas, M.A.V.3
  • 194
    • 44149121555 scopus 로고    scopus 로고
    • Lessons from the Pura community biogas project
    • [194] Reddy, A.K.N., Lessons from the Pura community biogas project. Energy Sustain Develop 8 (2004), 68–73.
    • (2004) Energy Sustain Develop , vol.8 , pp. 68-73
    • Reddy, A.K.N.1
  • 195
    • 13444300926 scopus 로고    scopus 로고
    • Biogas scrubbing, compression and storage: perspective and prospectus in Indian context
    • [195] Kapdi, S.S., Vjay, V.K., Rajesh, S.K., Prasad, R., Biogas scrubbing, compression and storage: perspective and prospectus in Indian context. Renew Energy 30 (2005), 1195–1202.
    • (2005) Renew Energy , vol.30 , pp. 1195-1202
    • Kapdi, S.S.1    Vjay, V.K.2    Rajesh, S.K.3    Prasad, R.4
  • 196
    • 70349430275 scopus 로고    scopus 로고
    • Biogas upgrading to vehicle fuel standards and grid injection. IEA bioenergy, task 37 – energy from biogas and landfill gas
    • [196] Persson, M., Jönsson, O., Wellinger, A., Biogas upgrading to vehicle fuel standards and grid injection. IEA bioenergy, task 37 – energy from biogas and landfill gas. 2006.
    • (2006)
    • Persson, M.1    Jönsson, O.2    Wellinger, A.3
  • 197
    • 84982094571 scopus 로고    scopus 로고
    • Biogas Support Programme (BSP) and Netherlands Development Organization (SNV/N)
    • Lalitpur, Nepal
    • [197] Biogas Support Programme (BSP) and Netherlands Development Organization (SNV/N). Advanced courses in bio-gas technology. Lalitpur, Nepal; 2001.
    • (2001) Advanced courses in bio-gas technology
  • 198
    • 84982157919 scopus 로고    scopus 로고
    • Biogas production, upgradation and slurry management
    • Narosa Publication p. 73–4 [V.K. Vijay]
    • [198] Bhandari, D.S., Biogas production, upgradation and slurry management. 2012, Narosa Publication p. 73–4 [V.K. Vijay].
    • (2012)
    • Bhandari, D.S.1
  • 199
  • 200
    • 0001697253 scopus 로고
    • Studies on the anaerobic decomposition of plant materials – 1. The anaerobic decomposition of rice straw (Oryza sativa)
    • [200] Acharya, C.N., Studies on the anaerobic decomposition of plant materials – 1. The anaerobic decomposition of rice straw (Oryza sativa). Biochem J 29 (1935), 528–535.
    • (1935) Biochem J , vol.29 , pp. 528-535
    • Acharya, C.N.1
  • 201
    • 84860192700 scopus 로고
    • Manure and gas production by anaerobic fermentation of organic wastes
    • [201] Desai, S.V., Biswas, S.C., Manure and gas production by anaerobic fermentation of organic wastes. Ind Farm 6 (1945), 67–68.
    • (1945) Ind Farm , vol.6 , pp. 67-68
    • Desai, S.V.1    Biswas, S.C.2
  • 202
    • 84982127917 scopus 로고    scopus 로고
    • Biogas production, upgradation and slurry management
    • Narosa Publication p. 1–2 [V.K. Vijay]
    • [202] Chanakya, H.N., Biogas production, upgradation and slurry management. 2012, Narosa Publication p. 1–2 [V.K. Vijay].
    • (2012)
    • Chanakya, H.N.1
  • 203
    • 84982127878 scopus 로고
    • Community biogas plant system of Pura village
    • Technical report Karnataka State Council for Science and Technology Bangalore
    • [203] Reddy, Rajaraman I., Subramanian, D.K., Rajabapaiah, P.A., Community biogas plant system of Pura village. Technical report, 1979, Karnataka State Council for Science and Technology, Bangalore.
    • (1979)
    • Reddy, R.I.1    Subramanian, D.K.2    Rajabapaiah, P.A.3
  • 207
    • 0033827797 scopus 로고    scopus 로고
    • Renewable methane from anaerobic digestion of biomass
    • [207] Chynoweth, D.P., Owens, J.M., Legrand, R., Renewable methane from anaerobic digestion of biomass. Renew Energy 22 (2001), 1–8.
    • (2001) Renew Energy , vol.22 , pp. 1-8
    • Chynoweth, D.P.1    Owens, J.M.2    Legrand, R.3
  • 208
    • 0034014507 scopus 로고    scopus 로고
    • Ecological, energetic and economic comparison of anaerobic digestion with different competing technologies to treat biogenic wastes
    • [208] Edelmann, W., Schleiss, K., Joss, A., Ecological, energetic and economic comparison of anaerobic digestion with different competing technologies to treat biogenic wastes. Water Sci Technol 41 (2000), 263–273.
    • (2000) Water Sci Technol , vol.41 , pp. 263-273
    • Edelmann, W.1    Schleiss, K.2    Joss, A.3
  • 209
    • 0031432811 scopus 로고    scopus 로고
    • Anaerobic digestion of biomass for methane production: a review
    • [209] Gunaseelan, V.N., Anaerobic digestion of biomass for methane production: a review. Biomass Bioenergy 13 (1997), 83–114.
    • (1997) Biomass Bioenergy , vol.13 , pp. 83-114
    • Gunaseelan, V.N.1
  • 210
    • 54749119369 scopus 로고    scopus 로고
    • Biomethane from dairy waste: a sourcebook for the production and use of renewable natural gas in California
    • USDA Rural Development
    • [210] Krich, K., Augenstein, D., Batmale, J.P., Benemann, J., Rutledge, B., Salour, D., Biomethane from dairy waste: a sourcebook for the production and use of renewable natural gas in California. 2005, USDA Rural Development.
    • (2005)
    • Krich, K.1    Augenstein, D.2    Batmale, J.P.3    Benemann, J.4    Rutledge, B.5    Salour, D.6
  • 211
    • 26844528119 scopus 로고    scopus 로고
    • Vision for utilization of livestock residue as bioenergy resource in Japan
    • [211] Fujino, J., Morita, A., Matsuoka, Y., Sawayama, S., Vision for utilization of livestock residue as bioenergy resource in Japan. Biomass Bioenergy 29 (2005), 367–374.
    • (2005) Biomass Bioenergy , vol.29 , pp. 367-374
    • Fujino, J.1    Morita, A.2    Matsuoka, Y.3    Sawayama, S.4
  • 212
    • 3242781034 scopus 로고    scopus 로고
    • Investigation and assessment of sludge pre-treatment processes
    • [212] Muller, J.A., Winter, A., Strunkmann, G., Investigation and assessment of sludge pre-treatment processes. Water Sci Technol 49 (2004), 97–104.
    • (2004) Water Sci Technol , vol.49 , pp. 97-104
    • Muller, J.A.1    Winter, A.2    Strunkmann, G.3
  • 213
    • 0033047966 scopus 로고    scopus 로고
    • Ammonia inhibition in high-solids biogasification: an over- view and practical solutions
    • [213] Kayhanian, M., Ammonia inhibition in high-solids biogasification: an over- view and practical solutions. Environ Technol 20 (1999), 355–365.
    • (1999) Environ Technol , vol.20 , pp. 355-365
    • Kayhanian, M.1
  • 214
    • 80052707626 scopus 로고    scopus 로고
    • A new algorithm to characterize biodegradability of biomass during anaerobic reaction: influence of lignin concentration on methane production potential
    • [214] Triolo, M.J., Sommer, G.S., Moller, B.H., Weisbjerg, R.M., Jiang, Y.X., A new algorithm to characterize biodegradability of biomass during anaerobic reaction: influence of lignin concentration on methane production potential. Bioresour Technol 102:20 (2011), 9395–9402.
    • (2011) Bioresour Technol , vol.102 , Issue.20 , pp. 9395-9402
    • Triolo, M.J.1    Sommer, G.S.2    Moller, B.H.3    Weisbjerg, R.M.4    Jiang, Y.X.5
  • 215
    • 84872734956 scopus 로고    scopus 로고
    • Evaluation of two statistical methods for optimizing the feeding composition in anaerobic codigestion: mixture design and central composite design
    • [215] Wang, X., Yang, G., Li, F., Feng, Y., Ren, G., Han, X., Evaluation of two statistical methods for optimizing the feeding composition in anaerobic codigestion: mixture design and central composite design. Bioresour Technol 131 (2013), 172–178.
    • (2013) Bioresour Technol , vol.131 , pp. 172-178
    • Wang, X.1    Yang, G.2    Li, F.3    Feng, Y.4    Ren, G.5    Han, X.6
  • 216
    • 84863510197 scopus 로고    scopus 로고
    • Optimizing feeding composition and carbon–nitrogen ratios for improved methane yield during anaerobic codigestion of dairy, chicken manure and wheat straw
    • [216] Wang, X., Yang, Y., Feng, Y., Ren, G., Han, X., Optimizing feeding composition and carbon–nitrogen ratios for improved methane yield during anaerobic codigestion of dairy, chicken manure and wheat straw. Bioresour Technol 120 (2012), 78–83.
    • (2012) Bioresour Technol , vol.120 , pp. 78-83
    • Wang, X.1    Yang, Y.2    Feng, Y.3    Ren, G.4    Han, X.5
  • 217
    • 0036148701 scopus 로고    scopus 로고
    • Continuous codigestion of cattle slurry with fruit and vegetable wastes and chicken manure
    • [217] Callaghan, F.J., Wase, D.A.J., Thayanithy, K., Forster, C.F., Continuous codigestion of cattle slurry with fruit and vegetable wastes and chicken manure. Biomass Bioenergy 27 (2002), 71–77.
    • (2002) Biomass Bioenergy , vol.27 , pp. 71-77
    • Callaghan, F.J.1    Wase, D.A.J.2    Thayanithy, K.3    Forster, C.F.4
  • 218
    • 33947591483 scopus 로고    scopus 로고
    • Optimization of biogas production by co-digesting whey with diluted poultry manure
    • [218] Gelegenis, J., Georgakakis, D., Angelidaki, I., Mavris, V., Optimization of biogas production by co-digesting whey with diluted poultry manure. Renew Energy 32 (2007), 2147–2160.
    • (2007) Renew Energy , vol.32 , pp. 2147-2160
    • Gelegenis, J.1    Georgakakis, D.2    Angelidaki, I.3    Mavris, V.4
  • 219
    • 84878831049 scopus 로고    scopus 로고
    • Co-digestion of solid poultry manure with municipal sewage sludge
    • [219] Borowski, S., Weatherley, L., Co-digestion of solid poultry manure with municipal sewage sludge. Bioresour Technol 142 (2013), 345–352.
    • (2013) Bioresour Technol , vol.142 , pp. 345-352
    • Borowski, S.1    Weatherley, L.2
  • 220
    • 2442577343 scopus 로고    scopus 로고
    • Hydrolysis and thermophilic anaerobic digestion of sewage sludge and organic fraction of municipal solid waste
    • [220] Del Borghi, A., Converti, A., Palazzi, E., DelBorghi, M., Hydrolysis and thermophilic anaerobic digestion of sewage sludge and organic fraction of municipal solid waste. Bioprocess Eng 20 (1999), 553–560.
    • (1999) Bioprocess Eng , vol.20 , pp. 553-560
    • Del Borghi, A.1    Converti, A.2    Palazzi, E.3    DelBorghi, M.4
  • 222
    • 0342442277 scopus 로고
    • A comparative study of the thermophilic biomethanization of putrescible organic wastes
    • [222] Bernal, O., Llabres, P., Cecchi, F., Mata-Alvarez, J., A comparative study of the thermophilic biomethanization of putrescible organic wastes. Wastewaters 1 (1992), 197–206.
    • (1992) Wastewaters , vol.1 , pp. 197-206
    • Bernal, O.1    Llabres, P.2    Cecchi, F.3    Mata-Alvarez, J.4
  • 224
    • 4444316706 scopus 로고    scopus 로고
    • Expanding the potential of in-vessel co-composting
    • [224] Hayes, P., Expanding the potential of in-vessel co-composting. Biocycle 45 (2004), 38–42.
    • (2004) Biocycle , vol.45 , pp. 38-42
    • Hayes, P.1
  • 225
    • 33846223208 scopus 로고    scopus 로고
    • Rotary digester operational realities
    • [225] Spencer, R.L., Rotary digester operational realities. Biocycle 47 (2006), 53–55.
    • (2006) Biocycle , vol.47 , pp. 53-55
    • Spencer, R.L.1
  • 226
    • 0016786769 scopus 로고
    • Thermophilic anaerobic digestion of solid waste for fuel gas production
    • [226] Cooney, C.L., Wise, D.L., Thermophilic anaerobic digestion of solid waste for fuel gas production. Biotechnol Bioeng 17 (1975), 1119–1135.
    • (1975) Biotechnol Bioeng , vol.17 , pp. 1119-1135
    • Cooney, C.L.1    Wise, D.L.2
  • 227
    • 84921956662 scopus 로고    scopus 로고
    • Anaerobic digestion of vinasse from sugarcane ethanol production in Brazil: challenges and perspectives
    • [227] Moraes, Bruna S., Zaiat, Marcelo, Bonomi, Antonio, Anaerobic digestion of vinasse from sugarcane ethanol production in Brazil: challenges and perspectives. Renew Sustain Energy Rev 44 (2015), 888–903.
    • (2015) Renew Sustain Energy Rev , vol.44 , pp. 888-903
    • Moraes, B.S.1    Zaiat, M.2    Bonomi, A.3
  • 228
    • 84982185605 scopus 로고    scopus 로고
    • Bioethanol production from cassava with vinasse recycle for fermentation
    • Scientific Repository
    • [228] Rusdianto, Andrew Setiawan, Bioethanol production from cassava with vinasse recycle for fermentation. 2010, Scientific Repository.
    • (2010)
    • Rusdianto, A.S.1
  • 229
    • 84982134058 scopus 로고    scopus 로고
    • Residual effects of sugar beet vinasse on plant growth. Developments in plant and soil sciences
    • [229] Martín-Olmedo, P., Cabrera, F., Lopez, R., Murillo, J.M., Residual effects of sugar beet vinasse on plant growth. Developments in plant and soil sciences. 1996, 527–531.
    • (1996) , pp. 527-531
    • Martín-Olmedo, P.1    Cabrera, F.2    Lopez, R.3    Murillo, J.M.4
  • 230
    • 84904688038 scopus 로고    scopus 로고
    • Anaerobic digestion of vinasse for the production of methane in the sugar cane distillery
    • [230] Baez-Smith, Carmen, Anaerobic digestion of vinasse for the production of methane in the sugar cane distillery. SPRI conference on sugar processing, 2006.
    • (2006) SPRI conference on sugar processing
    • Baez-Smith, C.1
  • 231
    • 84982096460 scopus 로고    scopus 로고
    • Influence of alkalinity and VFAs on the performance of an UASB reactor with recirculation for the treatment of tequila vinasses
    • [231] López-López, Alberto, León-Becerril, Elizabeth, Rosales-Contreras, María Elena, Villegas-García, Edgardo, Influence of alkalinity and VFAs on the performance of an UASB reactor with recirculation for the treatment of tequila vinasses. 2015.
    • (2015)
    • López-López, A.1    León-Becerril, E.2    Rosales-Contreras, M.E.3    Villegas-García, E.4
  • 232
    • 0037209516 scopus 로고    scopus 로고
    • Rice straw-wood particle composite for sound absorbing wooden construction materials
    • [232] Yang, H.S., Kim, D.J., Kim, H.J., Rice straw-wood particle composite for sound absorbing wooden construction materials. Bioresour Technol 86 (2003), 117–121.
    • (2003) Bioresour Technol , vol.86 , pp. 117-121
    • Yang, H.S.1    Kim, D.J.2    Kim, H.J.3
  • 233
    • 56249139730 scopus 로고    scopus 로고
    • Rice husk ash as an effective adsorbent: evaluation of adsorptive characteristics for indigo carmine dye
    • [233] Lakshmi, U.R., Srivastava, V.C., Mall, I.D., Lataye, D.H., Rice husk ash as an effective adsorbent: evaluation of adsorptive characteristics for indigo carmine dye. J Environ Manage 90 (2009), 710–720.
    • (2009) J Environ Manage , vol.90 , pp. 710-720
    • Lakshmi, U.R.1    Srivastava, V.C.2    Mall, I.D.3    Lataye, D.H.4
  • 234
    • 0034077781 scopus 로고    scopus 로고
    • Determination of reactor scaling factors for throatless rice husk gasifier
    • [234] Jain, A.K., Goss, J.R., Determination of reactor scaling factors for throatless rice husk gasifier. Biomass Bioenergy 18 (2000), 249–256.
    • (2000) Biomass Bioenergy , vol.18 , pp. 249-256
    • Jain, A.K.1    Goss, J.R.2
  • 235
    • 69349104707 scopus 로고    scopus 로고
    • An evaluation on rice husks and pulverized coal blends using a drop tube furnace and a thermogravimetric analyzer for application to a blast furnace
    • [235] Chen, W.H., Wu, J.S., An evaluation on rice husks and pulverized coal blends using a drop tube furnace and a thermogravimetric analyzer for application to a blast furnace. Energy 34 (2009), 1458–1466.
    • (2009) Energy , vol.34 , pp. 1458-1466
    • Chen, W.H.1    Wu, J.S.2
  • 236
    • 84858720805 scopus 로고    scopus 로고
    • A review on utilization of biomass from rice industry as a source of renewable energy
    • [236] Lim, J.S., Manan, Z.A., Wan Alwi, S.R., Hashim, H., A review on utilization of biomass from rice industry as a source of renewable energy. Renew Sustain Energy Rev 16 (2012), 3084–3094.
    • (2012) Renew Sustain Energy Rev , vol.16 , pp. 3084-3094
    • Lim, J.S.1    Manan, Z.A.2    Wan Alwi, S.R.3    Hashim, H.4
  • 237
    • 84982155038 scopus 로고
    • Food and Agriculture Organization (FAO). Better utilization of crop residues and byproducts in animal feeding: research guidelines – 1. State of knowledge
    • [retrieved 25.10.11].
    • [237] Food and Agriculture Organization (FAO). Better utilization of crop residues and byproducts in animal feeding: research guidelines – 1. State of knowledge. FAO animal production and health paper 50.1; 1985. < http://www.fao.org/DOCREP/003/X6553E/X6553E00.HTM> [retrieved 25.10.11].
    • (1985) FAO animal production and health paper 50.1
  • 238
    • 34250321725 scopus 로고    scopus 로고
    • Laboratory investigations on codigestion of energy crops and crop residues with cow manure for methane production: effect of crop to manure ratio
    • [238] Lehtomaki, A., Huttunen, S., Rintala, J.A., Laboratory investigations on codigestion of energy crops and crop residues with cow manure for methane production: effect of crop to manure ratio. Resour Conserv Recycl 51 (2007), 591–609.
    • (2007) Resour Conserv Recycl , vol.51 , pp. 591-609
    • Lehtomaki, A.1    Huttunen, S.2    Rintala, J.A.3
  • 239
    • 10244261652 scopus 로고    scopus 로고
    • Anaerobic codigestion of sewage sludge and food waste using temperature-phased anaerobic digestion process
    • [239] Kim, H.W., Han, S.K., Shin, H.S., Anaerobic codigestion of sewage sludge and food waste using temperature-phased anaerobic digestion process. Water Sci Technol 50 (2004), 107–114.
    • (2004) Water Sci Technol , vol.50 , pp. 107-114
    • Kim, H.W.1    Han, S.K.2    Shin, H.S.3
  • 240
    • 84893821853 scopus 로고    scopus 로고
    • MOA. National crop straw resources survey and evaluation reports
    • [240] MOA. National crop straw resources survey and evaluation reports. Agric Eng Technol (Renew Energy Ind) 2011; 02: 2–5.
    • (2011) Agric Eng Technol (Renew Energy Ind) , vol.2 , pp. 2-5
  • 241
    • 70249130061 scopus 로고    scopus 로고
    • Wet explosion of wheat straw and codigestion with swine manure: effect on the methane productivity
    • [241] Wang, G., Gavala, H.N., Skiadas, I.V., Ahring, B.K., Wet explosion of wheat straw and codigestion with swine manure: effect on the methane productivity. Waste Manage 29 (2009), 2830–2835.
    • (2009) Waste Manage , vol.29 , pp. 2830-2835
    • Wang, G.1    Gavala, H.N.2    Skiadas, I.V.3    Ahring, B.K.4
  • 242
    • 84893862850 scopus 로고    scopus 로고
    • Anaerobic slurry co-digestion of poultry manure and straw: effect of organic loading and temperature
    • [242] Babaee, A., Shayegan, J., Roshani, A., Anaerobic slurry co-digestion of poultry manure and straw: effect of organic loading and temperature. J Environ Health Sci Eng, 11, 2013, 15.
    • (2013) J Environ Health Sci Eng , vol.11 , pp. 15
    • Babaee, A.1    Shayegan, J.2    Roshani, A.3
  • 243
    • 84879204930 scopus 로고    scopus 로고
    • Thermophilic co-digestion of pig manure and crude glycerol: process performance and digestate stability
    • [243] Astals, S., Nolla-Ardevol, V., Mata-Alvarez, J., Thermophilic co-digestion of pig manure and crude glycerol: process performance and digestate stability. J Biotechnol 166 (2013), 97–104.
    • (2013) J Biotechnol , vol.166 , pp. 97-104
    • Astals, S.1    Nolla-Ardevol, V.2    Mata-Alvarez, J.3
  • 244
    • 84878500864 scopus 로고    scopus 로고
    • Potential of methane production by thermophilic anaerobic co-digestion of pulp and paper sludge with pig manure
    • [244] Chen, J.H., Lin, C.C., Wang, K.S., Potential of methane production by thermophilic anaerobic co-digestion of pulp and paper sludge with pig manure. J Biobased Mater Bioenergy 7 (2013), 300–304.
    • (2013) J Biobased Mater Bioenergy , vol.7 , pp. 300-304
    • Chen, J.H.1    Lin, C.C.2    Wang, K.S.3
  • 245
    • 84878934219 scopus 로고    scopus 로고
    • Influence of palm oil mill effluent as inoculum on anaerobic digestion of cattle manure for biogas production
    • [245] Saidu, M., Yuzir, A., Salim, M.R., Azman, S., Abdullah, N., Influence of palm oil mill effluent as inoculum on anaerobic digestion of cattle manure for biogas production. Bioresour Technol 141 (2013), 174–176.
    • (2013) Bioresour Technol , vol.141 , pp. 174-176
    • Saidu, M.1    Yuzir, A.2    Salim, M.R.3    Azman, S.4    Abdullah, N.5
  • 246
    • 78650826490 scopus 로고    scopus 로고
    • Optimizing feed composition for improved methane yield during anaerobic digestion of cow manure based waste mixtures
    • [246] Ashekuzzama, S.M., Poulsen, T., Optimizing feed composition for improved methane yield during anaerobic digestion of cow manure based waste mixtures. Bioresour Technol 102 (2011), 2213–2218.
    • (2011) Bioresour Technol , vol.102 , pp. 2213-2218
    • Ashekuzzama, S.M.1    Poulsen, T.2
  • 247
    • 84893830001 scopus 로고    scopus 로고
    • Semi-continuous anaerobic co-digestion of dairy manure with three crop residues for biogas production
    • [247] Li, Jiang, Wei, Luoyu, Duan, Qiwu, Guoquan, Hu, Guozhi, Zhang, Semi-continuous anaerobic co-digestion of dairy manure with three crop residues for biogas production. Bioresour Technol 156 (2014), 307–313.
    • (2014) Bioresour Technol , vol.156 , pp. 307-313
    • Li, J.1    Wei, L.2    Duan, Q.3    Guoquan, H.4    Guozhi, Z.5
  • 248
    • 51349153711 scopus 로고    scopus 로고
    • Pretreatments to enhance the digestibility of lignocellulosic biomass
    • [248] Hendriks, A.T.W.M., Zeeman, G., Pretreatments to enhance the digestibility of lignocellulosic biomass. Bioresour Technol 100 (2009), 10–18.
    • (2009) Bioresour Technol , vol.100 , pp. 10-18
    • Hendriks, A.T.W.M.1    Zeeman, G.2
  • 250
    • 34250127138 scopus 로고
    • Screening of white-rot fungi for biological pretreatment of wheat straw for biogas production
    • [250] Müller, H.W., Trösch, W., Screening of white-rot fungi for biological pretreatment of wheat straw for biogas production. Appl Microbiol Biotechnol 24 (1986), 180–185.
    • (1986) Appl Microbiol Biotechnol , vol.24 , pp. 180-185
    • Müller, H.W.1    Trösch, W.2
  • 251
    • 84870828518 scopus 로고    scopus 로고
    • A comparison of different pre-treatments to increase methane production from two agricultural substrates
    • [251] Sambusiti, C., Monlau, F., Ficara, E., Carrère, H., Malpei, F., A comparison of different pre-treatments to increase methane production from two agricultural substrates. Appl Energy 104 (2013), 62–70.
    • (2013) Appl Energy , vol.104 , pp. 62-70
    • Sambusiti, C.1    Monlau, F.2    Ficara, E.3    Carrère, H.4    Malpei, F.5
  • 252
    • 82155166286 scopus 로고    scopus 로고
    • Screening of steam explosion conditions for glucose production from non-impregnated wheat straw
    • [252] Horn, S.J., Nguyen, Q.D., Westereng, B., Nilsen, P.J., Eijsink, V.G.H., Screening of steam explosion conditions for glucose production from non-impregnated wheat straw. Biomass Bioenergy 35 (2011), 4879–7886.
    • (2011) Biomass Bioenergy , vol.35 , pp. 4879-7886
    • Horn, S.J.1    Nguyen, Q.D.2    Westereng, B.3    Nilsen, P.J.4    Eijsink, V.G.H.5
  • 253
    • 67349177148 scopus 로고    scopus 로고
    • Analysis of methane potentials of steam-exploded wheat straw and estimation of energy yield of combined ethanol and methane production
    • [253] Bauer, A., Bösch, P., Friedl, A., Amon, T., Analysis of methane potentials of steam-exploded wheat straw and estimation of energy yield of combined ethanol and methane production. J Biotechnol 142 (2009), 50–55.
    • (2009) J Biotechnol , vol.142 , pp. 50-55
    • Bauer, A.1    Bösch, P.2    Friedl, A.3    Amon, T.4
  • 254
    • 84866771537 scopus 로고    scopus 로고
    • Impact of steam explosion on biogas production from rape straw in relation to changes in chemical composition
    • [254] Vivekanand, V., Ryden, P., Horn, S.J., Tapp, H.S., Wellner, N., Eijsink, V.G.H., et al. Impact of steam explosion on biogas production from rape straw in relation to changes in chemical composition. Bioresour Technol 123 (2012), 608–615.
    • (2012) Bioresour Technol , vol.123 , pp. 608-615
    • Vivekanand, V.1    Ryden, P.2    Horn, S.J.3    Tapp, H.S.4    Wellner, N.5    Eijsink, V.G.H.6
  • 255
    • 84856209709 scopus 로고    scopus 로고
    • Conversion of phenols during anaerobic digestion of organic solid waste – a review of important microorganisms and impact of temperature
    • [255] Levén, L., Nyberg, K., Schnürer, A., Conversion of phenols during anaerobic digestion of organic solid waste – a review of important microorganisms and impact of temperature. J Environ Manage 95 (2012), 99–103.
    • (2012) J Environ Manage , vol.95 , pp. 99-103
    • Levén, L.1    Nyberg, K.2    Schnürer, A.3
  • 256
    • 84885232973 scopus 로고    scopus 로고
    • Biogas production from wheat straw and manure – impact of pretreatment and process operating parameters
    • [256] Risberg, Kajsa, Sun, Li, Levén, Lotta, Horn, Svein Jarle, Schnürer, Anna, Biogas production from wheat straw and manure – impact of pretreatment and process operating parameters. Bioresour Technol 149 (2013), 232–237.
    • (2013) Bioresour Technol , vol.149 , pp. 232-237
    • Risberg, K.1    Sun, L.2    Levén, L.3    Horn, S.J.4    Schnürer, A.5
  • 260
    • 84872690312 scopus 로고    scopus 로고
    • Biogas production, upgradation and slurry management
    • Narosa Publication [V.K. Vijay]
    • [260] Sanjay, Patel, Biogas production, upgradation and slurry management. 2012, Narosa Publication, 116–121 [V.K. Vijay].
    • (2012) , pp. 116-121
    • Sanjay, P.1
  • 261
    • 33746089927 scopus 로고    scopus 로고
    • Biomass digestion in agriculture: a successful pathway for the energy production and waste treatment in Germany
    • [261] Weiland, P., Biomass digestion in agriculture: a successful pathway for the energy production and waste treatment in Germany. Eng Life Sci 6:3 (2006), 302–309.
    • (2006) Eng Life Sci , vol.6 , Issue.3 , pp. 302-309
    • Weiland, P.1
  • 262
    • 77950860972 scopus 로고    scopus 로고
    • What type of digester configurations should be employed to produce biomethane from grass silage
    • [262] Nizami, A.S., Murphy, J.D., What type of digester configurations should be employed to produce biomethane from grass silage. Renew Sustain Energy Rev 14:6 (2010), 1558–1568.
    • (2010) Renew Sustain Energy Rev , vol.14 , Issue.6 , pp. 1558-1568
    • Nizami, A.S.1    Murphy, J.D.2
  • 263
    • 0036292250 scopus 로고    scopus 로고
    • Two-phase anaerobic digestion processes: a review
    • [263] Demirel, B., Yenigun, O., Two-phase anaerobic digestion processes: a review. J Chem Technol Biotechnol 77:7 (2002), 743–755.
    • (2002) J Chem Technol Biotechnol , vol.77 , Issue.7 , pp. 743-755
    • Demirel, B.1    Yenigun, O.2
  • 264
    • 0028887804 scopus 로고
    • Anaerobic digestion and waste water treatment systems
    • [264] Lettinga, G., Anaerobic digestion and waste water treatment systems. Antonie vanLeeuwenhoek, Int J Gen Mol Microbiol 67:1 (1995), 3–28.
    • (1995) Antonie vanLeeuwenhoek, Int J Gen Mol Microbiol , vol.67 , Issue.1 , pp. 3-28
    • Lettinga, G.1
  • 265
    • 0033038506 scopus 로고    scopus 로고
    • The use of the anaerobic baffled reactor (ABR) for waste water treatment: a review
    • [265] Barber, W.P., Stuckey, D.C., The use of the anaerobic baffled reactor (ABR) for waste water treatment: a review. Water Res 33:7 (1999), 1559–1578.
    • (1999) Water Res , vol.33 , Issue.7 , pp. 1559-1578
    • Barber, W.P.1    Stuckey, D.C.2
  • 267
    • 9644262757 scopus 로고    scopus 로고
    • Bioreactor performance in anaerobic digestion of fruit and vegetable wastes
    • [267] Bouallagui, H., Touhami, Y., Cheikh, R.B., Hamdi, M., Bioreactor performance in anaerobic digestion of fruit and vegetable wastes. Process Biochem 40:3–4 (2005), 989–995.
    • (2005) Process Biochem , vol.40 , Issue.3-4 , pp. 989-995
    • Bouallagui, H.1    Touhami, Y.2    Cheikh, R.B.3    Hamdi, M.4
  • 268
    • 84885444853 scopus 로고    scopus 로고
    • Reactor configurations for biogas plants – a model based analysis
    • [268] Bensmann, Astrid, Hanke-Rauschenbach, Richard, Sundmacher, Kai, Reactor configurations for biogas plants – a model based analysis. Chem Eng Sci 104 (2013), 413–426.
    • (2013) Chem Eng Sci , vol.104 , pp. 413-426
    • Bensmann, A.1    Hanke-Rauschenbach, R.2    Sundmacher, K.3
  • 270
    • 84938153766 scopus 로고    scopus 로고
    • Gas permeation processes in biogas upgrading: a short review
    • [270] Kárászová, M., Gas permeation processes in biogas upgrading: a short review. Chem Pap 69:10 (2015), 1277–1283.
    • (2015) Chem Pap , vol.69 , Issue.10 , pp. 1277-1283
    • Kárászová, M.1
  • 272
    • 84872690312 scopus 로고    scopus 로고
    • Biogas production, upgradation and slurry management
    • Narosa Publication p. 55–60 [V.K. Vijay]
    • [272] Vijay, Virendra Kumar, Biogas production, upgradation and slurry management. 2012, Narosa Publication p. 55–60 [V.K. Vijay].
    • (2012)
    • Vijay, V.K.1


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