메뉴 건너뛰기




Volumn 166, Issue 2, 2012, Pages 389-401

Additional paper waste in pulping sludge for biohydrogen production by heat-shocked sludge

Author keywords

Biohydrogen production; Paper waste; Pretreatment of substrate; Pulping sludge

Indexed keywords

ALTERNATIVE METHODS; ANAEROBIC FERMENTATION; BIO-HYDROGEN; BIO-HYDROGEN PRODUCTION; C/N RATIO; CARBON AND NITROGEN; CELLULOSIC SUBSTRATES; CONTINUOUS HYDROGEN PRODUCTION; DARK FERMENTATION; GLASS REACTORS; HIGH TEMPERATURE; INITIAL PH; LOW COSTS; NAOH SOLUTIONS; OPTIMAL CONDITIONS; ORGANIC SUBSTRATE; PAPER WASTE; PAPER WASTES; PRE-TREATMENT; PRODUCTION YIELD; PULPING SLUDGE; REDUCING SUGARS; RENEWABLE FUELS; SEED SLUDGES;

EID: 84856297623     PISSN: 02732289     EISSN: 15590291     Source Type: Journal    
DOI: 10.1007/s12010-011-9434-5     Document Type: Article
Times cited : (18)

References (38)
  • 1
    • 65249159133 scopus 로고    scopus 로고
    • Fundamentals and use of hydrogen as a fuel
    • R.B. Gupta (eds). CRC Press Taylor & Francis Group Boca Raton
    • Pant, K. K., & Gupta, R. B. (2009). Fundamentals and use of hydrogen as a fuel. In R. B. Gupta (Ed.), Hydrogen fuel: production, transport, and storage (pp. 3-32). Boca Raton: CRC Press Taylor & Francis Group.
    • (2009) Hydrogen Fuel: Production, Transport, and Storage , pp. 3-32
    • Pant, K.K.1    Gupta, R.B.2
  • 2
    • 36649038796 scopus 로고    scopus 로고
    • Comparison of environmental and economic aspects of various hydrogen production methods
    • DOI 10.1016/j.rser.2006.07.012, PII S1364032106001158
    • Kothari, R., Buddhi, D., & Sawhney, R. L. (2008). Comparison of environmental and economic aspects of various hydrogen production methods. Renewable and Sustainable Energy Reviews, 12, 553-563. (Pubitemid 350198975)
    • (2008) Renewable and Sustainable Energy Reviews , vol.12 , Issue.2 , pp. 553-563
    • Kothari, R.1    Buddhi, D.2    Sawhney, R.L.3
  • 3
    • 0343462148 scopus 로고    scopus 로고
    • Hydrogen production by biological processes: A survey of literature
    • DOI 10.1016/S0360-3199(00)00058-6
    • Das, D., & Veziroǧlu, T. N. (2001). Hydrogen production by biological processes: a survey of literature. International Journal of Hydrogen Energy, 26, 13-28. (Pubitemid 32029921)
    • (2001) International Journal of Hydrogen Energy , vol.26 , Issue.1 , pp. 13-28
    • Das, D.1    Veziroglu, T.N.2
  • 4
    • 84889876732 scopus 로고    scopus 로고
    • Biohydrogen production: Fundamentals, challenges, and operation strategies for enhanced yield
    • S.K. Khanal (eds). John Wiley & Sons, Inc. Iowa. 10.1002/ 9780813804545.ch9
    • Khanal, S. K. (2008). Biohydrogen production: fundamentals, challenges, and operation strategies for enhanced yield. In S. K. Khanal (Ed.), Anaerobic biotechnology for bioenergy production: principles and applications (pp. 189-219). Iowa: John Wiley & Sons, Inc.
    • (2008) Anaerobic Biotechnology for Bioenergy Production: Principles and Applications , pp. 189-219
    • Khanal, S.K.1
  • 5
    • 33746874041 scopus 로고    scopus 로고
    • Hydrogen production by Clostridium thermocellum 27405 from cellulosic biomass substrates
    • DOI 10.1016/j.ijhydene.2006.06.015, PII S0360319906002217
    • David, B. L., Rumana, I., Nazim, C., & Richard, S. (2006). Hydrogen production by Clostridium thermocellum 27405 from cellulosic biomass substrates. International Journal of Hydrogen Energy, 31, 1496-1503. (Pubitemid 44190143)
    • (2006) International Journal of Hydrogen Energy , vol.31 , Issue.11 , pp. 1496-1503
    • Levin, D.B.1    Islam, R.2    Cicek, N.3    Sparling, R.4
  • 6
    • 34248637324 scopus 로고    scopus 로고
    • Hydrogen production from the fermentation of corn stover biomass pretreated with a steam-explosion process
    • DOI 10.1016/j.ijhydene.2006.09.027, PII S0360319906004538
    • Datar, R., Huang, J., Maness, P. C., Mohagheghi, A., Czernil, S., & Chornet, E. (2007). Hydrogen production from the fermentation of corn stover biomass pretreated with a steam-explosion process. International Journal of Hydrogen Energy, 32, 932-939. (Pubitemid 46777180)
    • (2007) International Journal of Hydrogen Energy , vol.32 , Issue.8 , pp. 932-939
    • Datar, R.1    Huang, J.2    Maness, P.-C.3    Mohagheghi, A.4    Czernik, S.5    Chornet, E.6
  • 7
    • 52249124531 scopus 로고    scopus 로고
    • Bio-hydrogen production from the fermentation of sugarcane bagasse hydrolysate by Clostridium butyricum
    • 10.1016/j.ijhydene.2008.05.008 1:CAS:528:DC%2BD1cXhtFOltb%2FF
    • Pattra, S., Sangyoka, S., Boonmee, M., & Reungsang, A. (2008). Bio-hydrogen production from the fermentation of sugarcane bagasse hydrolysate by Clostridium butyricum. International Journal of Hydrogen Energy, 33, 5256-5265.
    • (2008) International Journal of Hydrogen Energy , vol.33 , pp. 5256-5265
    • Pattra, S.1    Sangyoka, S.2    Boonmee, M.3    Reungsang, A.4
  • 8
    • 77949875394 scopus 로고    scopus 로고
    • Wood biomass pretreatment for cellulosic ethanol production: Technology and energy consumption evaluation
    • 10.1016/j.biortech.2009.11.007 1:CAS:528:DC%2BC3cXjvFynt7g%3D
    • Zhu, J. Y., & Pan, X. J. (2010). Wood biomass pretreatment for cellulosic ethanol production: technology and energy consumption evaluation. Bioresource Technology, 101, 4992-5002.
    • (2010) Bioresource Technology , vol.101 , pp. 4992-5002
    • Zhu, J.Y.1    Pan, X.J.2
  • 9
    • 77949874216 scopus 로고    scopus 로고
    • Pretreatment technologies for an efficient bioethanol production process based on enzymatic hydrolysis: A review
    • 10.1016/j.biortech.2009.11.093 1:CAS:528:DC%2BC3cXjvFynsbg%3D
    • Alvira, P., Tomás-Pejó, E., Ballesteros, M., & Negro, M. J. (2010). Pretreatment technologies for an efficient bioethanol production process based on enzymatic hydrolysis: a review. Bioresource Technology, 101, 4851-4861.
    • (2010) Bioresource Technology , vol.101 , pp. 4851-4861
    • Alvira, P.1    Tomás-Pejó, E.2    Ballesteros, M.3    Negro, M.J.4
  • 10
    • 50349103278 scopus 로고    scopus 로고
    • Pretreatment of woody and herbaceous biomass for enzymatic saccharification using sulfuric acid-free ethanol cooking
    • 10.1016/j.biortech.2008.04.049 1:CAS:528:DC%2BD1cXhtVOmur3M
    • Teramoto, Y., Lee, S. H., & Endo, T. (2008). Pretreatment of woody and herbaceous biomass for enzymatic saccharification using sulfuric acid-free ethanol cooking. Bioresource Technology, 99, 8856-8863.
    • (2008) Bioresource Technology , vol.99 , pp. 8856-8863
    • Teramoto, Y.1    Lee, S.H.2    Endo, T.3
  • 11
    • 51349153711 scopus 로고    scopus 로고
    • Pretreatments to enhance the digestibility of lignocellulosic biomass
    • 10.1016/j.biortech.2008.05.027 1:CAS:528:DC%2BD1cXhtFemt7fL
    • Hendriks, A. T. W. M., & Zeeman, G. (2009). Pretreatments to enhance the digestibility of lignocellulosic biomass. Bioresource Technology, 100, 10-18.
    • (2009) Bioresource Technology , vol.100 , pp. 10-18
    • Atwm, H.1    Zeeman, G.2
  • 12
    • 59649120874 scopus 로고    scopus 로고
    • Effects of thermo-chemical pre-treatment on anaerobic biodegradability and hydrolysis of lignocellulosic biomass
    • 10.1016/j.biortech.2008.12.012 1:CAS:528:DC%2BD1MXit1aiu7Y%3D
    • Fernandes, T. V., Klaasse Bos, G. J., Zeeman, G., Sanders, J. P. M., & van Lier, J. B. (2009). Effects of thermo-chemical pre-treatment on anaerobic biodegradability and hydrolysis of lignocellulosic biomass. Bioresource Technology, 100, 2575-2579.
    • (2009) Bioresource Technology , vol.100 , pp. 2575-2579
    • Fernandes, T.V.1    Klaasse Bos, G.J.2    Zeeman, G.3    Sanders, J.P.M.4    Van Lier, J.B.5
  • 13
    • 33947576986 scopus 로고    scopus 로고
    • Ecological mechanism of fermentative hydrogen production by bacteria
    • DOI 10.1016/j.ijhydene.2006.08.004, PII S0360319906002965
    • Li, Y. F., Ren, N. Q., Chen, Y., & Zheng, G. X. (2007). Ecological mechanism of fermentative hydrogen production by bacteria. International Journal of Hydrogen Energy, 32, 755-760. (Pubitemid 46482805)
    • (2007) International Journal of Hydrogen Energy , vol.32 , Issue.6 , pp. 755-760
    • Li, Y.F.1    Qi Ren, N.2    Chen, Y.3    Xiang Zheng, G.4
  • 14
  • 15
    • 77955665569 scopus 로고    scopus 로고
    • Fermentative hydrogen production from cassava stillage by mixed anaerobic microflora: Effects of temperature and pH
    • 10.1016/j.apenergy.2010.07.004 1:CAS:528:DC%2BC3cXhtVaqtbrI
    • Luo, G., Xie, L., Zou, Z., Zhou, Q., & Wand, J. Y. (2010). Fermentative hydrogen production from cassava stillage by mixed anaerobic microflora: effects of temperature and pH. Applied Energy, 87, 3710-3717.
    • (2010) Applied Energy , vol.87 , pp. 3710-3717
    • Luo, G.1    Xie, L.2    Zou, Z.3    Zhou, Q.4    Wand, J.Y.5
  • 16
    • 70349771942 scopus 로고    scopus 로고
    • Bioconversion of lignocellulosic biomass to hydrogen: Potential and challenges
    • 10.1016/j.biotechadv.2009.05.007 1:CAS:528:DC%2BD1MXht1Cqtb3P
    • Ren, N., Wang, A., Cao, G., Xu, J., & Gao, L. (2009). Bioconversion of lignocellulosic biomass to hydrogen: potential and challenges. Biotechnology Advances, 27, 1051-1060.
    • (2009) Biotechnology Advances , vol.27 , pp. 1051-1060
    • Ren, N.1    Wang, A.2    Cao, G.3    Xu, J.4    Gao, L.5
  • 17
    • 77957603970 scopus 로고    scopus 로고
    • Effect of lignocelluloses-derived inhibitors on growth and hydrogen production by Thermoanaerobacterium thermosaccharolyticum W16
    • doi: 10.1016/j.ijhydene.2009.11.127
    • Cao, G. L., Ren, N. Q., Wang, A. J., Guo, W. Q., Xu, J. F., & Liu, B. F. (2010). Effect of lignocelluloses-derived inhibitors on growth and hydrogen production by Thermoanaerobacterium thermosaccharolyticum W16. International Journal of Hydrogen Energy. doi: 10.1016/j.ijhydene.2009.11.127.
    • (2010) International Journal of Hydrogen Energy
    • Cao, G.L.1    Ren, N.Q.2    Wang, A.J.3    Guo, W.Q.4    Xu, J.F.5    Liu, B.F.6
  • 19
    • 0035892791 scopus 로고    scopus 로고
    • Biohydrogen production as a function of pH and substrate concentration
    • DOI 10.1021/es001979r
    • Ginkel, S. V., Sung, S., & Lay, J. J. (2001). Biohydrogen production as a function of pH and substrate concentration. Environmental Science and Technology, 35, 4726-4730. (Pubitemid 33144333)
    • (2001) Environmental Science and Technology , vol.35 , Issue.24 , pp. 4726-4730
    • Van Ginkel, S.1    Sung, S.2    Lay, J.-J.3
  • 20
    • 33747333106 scopus 로고
    • Use of dinitrosalicylic acid reagent for determination of reducing sugar
    • 10.1021/ac60147a030 1:CAS:528:DyaG1MXmtFKiuw%3D%3D
    • Miller, G. L. (1959). Use of dinitrosalicylic acid reagent for determination of reducing sugar. Analytical Chemistry, 31, 426-428.
    • (1959) Analytical Chemistry , vol.31 , pp. 426-428
    • Miller, G.L.1
  • 21
    • 84943470296 scopus 로고
    • Measurement of cellulase activities
    • 10.1351/pac198759020257
    • Ghose, T. K. (1989). Measurement of cellulase activities. Pure and Applied Chemistry, 59, 257-268.
    • (1989) Pure and Applied Chemistry , vol.59 , pp. 257-268
    • Ghose, T.K.1
  • 23
    • 0036883387 scopus 로고    scopus 로고
    • Enzymatic saccharification of pretreated sunflower stalks
    • DOI 10.1016/S0961-9534(02)00050-8, PII S0961953402000508
    • Sharmas, S. K., Kalra, K. L., & Grewal, H. S. (2002). Enzymatic saccharification of pretreated sunflower stalks. Biomass Bioenergy, 23, 237-243. (Pubitemid 36219157)
    • (2002) Biomass and Bioenergy , vol.23 , Issue.3 , pp. 237-243
    • Sharma, S.K.1    Kalra, K.L.2    Grewal, H.S.3
  • 25
    • 56349118817 scopus 로고    scopus 로고
    • Enzymatic hydrolysis of alkali-pretreated rice straw by Trichoderma reesei ZM4-F3
    • 10.1016/j.biombioe.2008.02.006
    • QuiZhang, Z., & Weimin, C. (2008). Enzymatic hydrolysis of alkali-pretreated rice straw by Trichoderma reesei ZM4-F3. Biomass Bioenergy, 32, 1130-1135.
    • (2008) Biomass Bioenergy , vol.32 , pp. 1130-1135
    • Quizhang, Z.1    Weimin, C.2
  • 26
    • 65249115211 scopus 로고    scopus 로고
    • Methods for pretreatment of lignocellulosic biomass for efficient hydrolysis and biofuel production
    • 10.1021/ie801542g 1:CAS:528:DC%2BD1MXjsFegtbg%3D
    • Kumar, P., Barrett, D. M., Delwiche, M. J., & Stroeve, P. (2009). Methods for pretreatment of lignocellulosic biomass for efficient hydrolysis and biofuel production. Industrial and Engineering Chemistry Research, 48, 3713-3729.
    • (2009) Industrial and Engineering Chemistry Research , vol.48 , pp. 3713-3729
    • Kumar, P.1    Barrett, D.M.2    Delwiche, M.J.3    Stroeve, P.4
  • 28
    • 38849158671 scopus 로고    scopus 로고
    • Statistical optimization of process parameters on bio-hydrogen production from glucose by Clostridium sp. Fanp2
    • 10.1016/j.biortech.2007.05.055
    • Pan, C. M., Fan, Y. T., & Xing, Y. (2007). Statistical optimization of process parameters on bio-hydrogen production from glucose by Clostridium sp. Fanp2. Bioresource Technology, 99, 3146-3157.
    • (2007) Bioresource Technology , vol.99 , pp. 3146-3157
    • Pan, C.M.1    Fan, Y.T.2    Xing, Y.3
  • 29
    • 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
    • DOI 10.1016/j.ijhydene.2007.03.015, PII S0360319907001498
    • Modan, S. V., Bhaskar, Y. V., Krishna, P. M., Rao, N. C., Babu, V. L., & Sarna, P. N. (2007). Biohydrogen production from chemical wastewater as substrate by selectively enriched anaerobic mixed consortia: influence of fermentation pH and substrate composition. International Journal of Hydrogen Energy, 32, 2286-2295. (Pubitemid 47302637)
    • (2007) International Journal of Hydrogen Energy , vol.32 , Issue.13 , pp. 2286-2295
    • Venkata Mohan, S.1    Vijaya Bhaskar, Y.2    Murali Krishna, P.3    Chandrasekhara Rao, N.4    Lalit Babu, V.5    Sarma, P.N.6
  • 30
    • 33645973272 scopus 로고    scopus 로고
    • Biohydrogen production from beer less biomass by cow dung compost
    • 10.1016/j.biombioe.2005.10.009 1:CAS:528:DC%2BD28XjslCnt7w%3D
    • Fan, Y. T., Zhang, G. S., Guo, X. Y., Xing, Y., & Fan, M. H. (2006). Biohydrogen production from beer less biomass by cow dung compost. Biomass Bioenergy, 30, 493-496.
    • (2006) Biomass Bioenergy , vol.30 , pp. 493-496
    • Fan, Y.T.1    Zhang, G.S.2    Guo, X.Y.3    Xing, Y.4    Fan, M.H.5
  • 31
    • 55149094619 scopus 로고    scopus 로고
    • Enhanced cellulose-hydrogen production from corn stalk by lesser panda manure
    • 10.1016/j.ijhydene.2008.08.005 1:CAS:528:DC%2BD1cXht12gurzJ
    • Fan, Y. T., Xing, Y., Ma, H. C., Pan, C. M., & Hou, H. W. (2008). Enhanced cellulose-hydrogen production from corn stalk by lesser panda manure. International Journal of Hydrogen Energy, 33, 6058-6065.
    • (2008) International Journal of Hydrogen Energy , vol.33 , pp. 6058-6065
    • Fan, Y.T.1    Xing, Y.2    Ma, H.C.3    Pan, C.M.4    Hou, H.W.5
  • 32
    • 0344118745 scopus 로고    scopus 로고
    • Carbon/nitrogen-ratio effect on fermentative hydrogen production by mixed microflora
    • 10.1016/S0360-3199(03)00083-1 1:CAS:528:DC%2BD3sXptlyhurY%3D
    • Lin, C. Y., & Lay, C. H. (2004). Carbon/nitrogen-ratio effect on fermentative hydrogen production by mixed microflora. International Journal of Hydrogen Energy, 29, 41-45.
    • (2004) International Journal of Hydrogen Energy , vol.29 , pp. 41-45
    • Lin, C.Y.1    Lay, C.H.2
  • 33
    • 39049144688 scopus 로고    scopus 로고
    • Effects of temperature, hydraulic retention time and hydrogen extraction rate on hydrogen production from the fermentation of food industry residues and manure
    • 10.1016/j.ijhydene.2007.10.055 1:CAS:528:DC%2BD1cXhvVWntb0%3D
    • Karlsson, A., Vallin, L., & Ejlertsson, J. (2008). Effects of temperature, hydraulic retention time and hydrogen extraction rate on hydrogen production from the fermentation of food industry residues and manure. International Journal of Hydrogen Energy, 33, 953-962.
    • (2008) International Journal of Hydrogen Energy , vol.33 , pp. 953-962
    • Karlsson, A.1    Vallin, L.2    Ejlertsson, J.3
  • 34
    • 26444474170 scopus 로고    scopus 로고
    • Efficient conversion of wheat straw wastes into biohydrogen gas by cow dung compost
    • DOI 10.1016/j.biortech.2005.02.049, PII S0960852405001665
    • Fan, Y. T., Zhang, Y. H., Zhang, S. F., Hou, H. W., & Ren, B. Z. (2006). Efficient conversion of wheat straw wastes into biohydrogen gas by cow dung compost. Bioresource Technology, 97, 500-505. (Pubitemid 41427615)
    • (2006) Bioresource Technology , vol.97 , Issue.3 , pp. 500-505
    • Fan, Y.-T.1    Zhang, Y.-H.2    Zhang, S.-F.3    Hou, H.-W.4    Ren, B.-Z.5
  • 35
    • 34547828736 scopus 로고    scopus 로고
    • Biological hydrogen production from steam-exploded straw by simultaneous saccharification and fermentation
    • DOI 10.1016/j.ijhydene.2006.12.011, PII S0360319906006203
    • Li, D., & Chen, H. (2007). Biological hydrogen production from steam-exploded straw by simultaneous saccharification and fermentation. International Journal of Hydrogen Energy, 32, 1742-1748. (Pubitemid 47247583)
    • (2007) International Journal of Hydrogen Energy , vol.32 , Issue.12 , pp. 1742-1748
    • Li, D.1    Chen, H.2
  • 36
    • 79251638160 scopus 로고    scopus 로고
    • Effects of pretreatment methods on solubilization of beet-pulp and bio-hydrogen production yield
    • doi: 10.1016/j.ijhydene.2010.10.006
    • Ozkan, L., Erguder, T. H., & Demirer, G. N. (2010). Effects of pretreatment methods on solubilization of beet-pulp and bio-hydrogen production yield. International Journal of Hydrogen Energy. doi: 10.1016/j.ijhydene.2010. 10.006.
    • (2010) International Journal of Hydrogen Energy
    • Ozkan, L.1    Erguder, T.H.2    Demirer, G.N.3
  • 37
    • 64749101383 scopus 로고    scopus 로고
    • Bioconversion of aging corn to biohydrogen by dairy manure compost
    • 10.1021/ie801125g 1:CAS:528:DC%2BD1MXht1Oisb8%3D
    • Fan, Y., Guo, Y., Pan, C., & Hou, H. (2009). Bioconversion of aging corn to biohydrogen by dairy manure compost. Industrial and Engineering Chemistry Research, 48, 2493-2498.
    • (2009) Industrial and Engineering Chemistry Research , vol.48 , pp. 2493-2498
    • Fan, Y.1    Guo, Y.2    Pan, C.3    Hou, H.4


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.