메뉴 건너뛰기




Volumn 20, Issue 10, 2013, Pages 7268-7274

Prospects in straw disintegration for biogas production

Author keywords

Disintegration; Hot maceration; Oat straw; Phytomass; Pressure shockwaves; Steam explosion

Indexed keywords

BIOFUEL; METHANE;

EID: 84884701492     PISSN: 09441344     EISSN: 16147499     Source Type: Journal    
DOI: 10.1007/s11356-013-1736-4     Document Type: Article
Times cited : (56)

References (22)
  • 1
    • 33751192061 scopus 로고    scopus 로고
    • Biogas production from maize and dairy cattle manure-influence of biomass composition on the methane yield
    • Amon T, Amon B, Kryvoruchko V, Zollitsch W, Mayer K, Gruber L (2007) Biogas production from maize and dairy cattle manure-influence of biomass composition on the methane yield. Agric Ecosyst Environ 118: 173-182.
    • (2007) Agric Ecosyst Environ , vol.118 , pp. 173-182
    • Amon, T.1    Amon, B.2    Kryvoruchko, V.3    Zollitsch, W.4    Mayer, K.5    Gruber, L.6
  • 2
    • 12444272525 scopus 로고
    • Adsorption of gases in multimolecular layers
    • Brunauer S, Emmett PH, Teller E (1938) Adsorption of gases in multimolecular layers. J Am Chem Soc 60: 309-319.
    • (1938) J Am Chem Soc , vol.60 , pp. 309-319
    • Brunauer, S.1    Emmett, P.H.2    Teller, E.3
  • 4
    • 84985648231 scopus 로고
    • Mechanism of the enzymatic hydrolysis of cellulose: effects of major structural features of cellulose on enzymatic hydrolysis
    • Fan LT, Lee YH, David H (1980) Mechanism of the enzymatic hydrolysis of cellulose: effects of major structural features of cellulose on enzymatic hydrolysis. Biotechnol Bioeng 22: 177-199.
    • (1980) Biotechnol Bioeng , vol.22 , pp. 177-199
    • Fan, L.T.1    Lee, Y.H.2    David, H.3
  • 5
    • 84873602849 scopus 로고    scopus 로고
    • Biogas production from maize: current state, challenges and prospects. 2. Agronomic and environmental aspects
    • doi:10.1007/s12155-012-9227-x
    • Herrmann A (2012) Biogas production from maize: current state, challenges and prospects. 2. Agronomic and environmental aspects. Bioenerg Res. doi: 10. 1007/s12155-012-9227-x.
    • (2012) Bioenerg Res
    • Herrmann, A.1
  • 9
    • 84864430839 scopus 로고    scopus 로고
    • Lab-scale technology for biogas production from lignocellulose wastes
    • Krátký L, Jirout T, Nalezenec J (2012) Lab-scale technology for biogas production from lignocellulose wastes. Acta Polytech 52: 54-59.
    • (2012) Acta Polytech , vol.52 , pp. 54-59
    • Krátký, L.1    Jirout, T.2    Nalezenec, J.3
  • 10
    • 38949131242 scopus 로고    scopus 로고
    • Co-fermentation of grass and forage maize
    • Lemmer A, Oechsner H (2001) Co-fermentation of grass and forage maize. Landtechnik 56: 412-413.
    • (2001) Landtechnik , vol.56 , pp. 412-413
    • Lemmer, A.1    Oechsner, H.2
  • 11
    • 84870950528 scopus 로고    scopus 로고
    • Removal of hardly fermentable ballast from the maize silage to accelerate biogas production
    • Maroušek J (2013) Removal of hardly fermentable ballast from the maize silage to accelerate biogas production. Ind Crop Prod 44: 253-257.
    • (2013) Ind Crop Prod , vol.44 , pp. 253-257
    • Maroušek, J.1
  • 13
    • 0022137985 scopus 로고
    • Characteristics of carbohydrate degradation and the rate-limiting step in anaerobic digestion
    • Noike T, Endo G, Chang JE, Yaguchi JI, Matsumoto JI (1985) Characteristics of carbohydrate degradation and the rate-limiting step in anaerobic digestion. Biotechnol Bioeng 27: 1482-1489.
    • (1985) Biotechnol Bioeng , vol.27 , pp. 1482-1489
    • Noike, T.1    Endo, G.2    Chang, J.E.3    Yaguchi, J.I.4    Matsumoto, J.I.5
  • 14
    • 0343618697 scopus 로고    scopus 로고
    • Fermentation of lignocellulosic hydrolysates. II: inhibitors and mechanisms of inhibition
    • Palmqvist E, Hahn-Hägerdal B (2000) Fermentation of lignocellulosic hydrolysates. II: inhibitors and mechanisms of inhibition. Bioresour Technol 74: 25-33.
    • (2000) Bioresour Technol , vol.74 , pp. 25-33
    • Palmqvist, E.1    Hahn-Hägerdal, B.2
  • 16
    • 0032521160 scopus 로고    scopus 로고
    • Testing anaerobic biodegrability of polymers in a laboratory-scale simulated landfill
    • Ress BB, Calvert PP, Pettigrew CA, Barlaz MA (1998) Testing anaerobic biodegrability of polymers in a laboratory-scale simulated landfill. Environ Sci Technol 32: 821-827.
    • (1998) Environ Sci Technol , vol.32 , pp. 821-827
    • Ress, B.B.1    Calvert, P.P.2    Pettigrew, C.A.3    Barlaz, M.A.4
  • 17
    • 65549112563 scopus 로고    scopus 로고
    • Utilization of semi-natural grassland through integrated generation of solid fuel and biogas from biomass. II. Effects of hydrothermal conditioning and mechanical dehydration on anaerobic digestion of press fluids
    • Richter F, Graß R, Fricke T, Zerr W, Wachendorf M (2009) Utilization of semi-natural grassland through integrated generation of solid fuel and biogas from biomass. II. Effects of hydrothermal conditioning and mechanical dehydration on anaerobic digestion of press fluids. Grass Forage Sci 64: 132-143.
    • (2009) Grass Forage Sci , vol.64 , pp. 132-143
    • Richter, F.1    Graß, R.2    Fricke, T.3    Zerr, W.4    Wachendorf, M.5
  • 18
    • 0036236022 scopus 로고    scopus 로고
    • Labile and recalcitrant pools of carbon and nitrogen in organic matter decomposing at different depths in soil: an acid hydrolysis approach
    • Rovira P, Vallejo VR (2002) Labile and recalcitrant pools of carbon and nitrogen in organic matter decomposing at different depths in soil: an acid hydrolysis approach. Geoderma 107: 109-141.
    • (2002) Geoderma , vol.107 , pp. 109-141
    • Rovira, P.1    Vallejo, V.R.2
  • 19
    • 0347946280 scopus 로고
    • Conversion of biomass into methane gas
    • Shiralipour A, Smith PH (1984) Conversion of biomass into methane gas. Biomass 6: 85-92.
    • (1984) Biomass , vol.6 , pp. 85-92
    • Shiralipour, A.1    Smith, P.H.2
  • 20
    • 33645236358 scopus 로고    scopus 로고
    • Acid hydrolysis to partition plant material into decomposable and resistant fractions for use in the Rothamsted carbon model
    • Shirato Y, Yokozawa M (2006) Acid hydrolysis to partition plant material into decomposable and resistant fractions for use in the Rothamsted carbon model. Soil Biol Biochem 38: 812-816.
    • (2006) Soil Biol Biochem , vol.38 , pp. 812-816
    • Shirato, Y.1    Yokozawa, M.2
  • 21
    • 53549084887 scopus 로고    scopus 로고
    • Pretreatment of lignocellulosic wastes to improve ethanol and biogas production: a review
    • Taherzadeh MJ, Karimi K (2008) Pretreatment of lignocellulosic wastes to improve ethanol and biogas production: a review. Int J Mol Sci 9: 1621-1651.
    • (2008) Int J Mol Sci , vol.9 , pp. 1621-1651
    • Taherzadeh, M.J.1    Karimi, K.2
  • 22
    • 65549112563 scopus 로고    scopus 로고
    • Utilization of semi-natural grassland through integrated generation of solid fuel and biogas from biomass. I. Effects of hydrothermal conditioning and mechanical dehydration on mass flows of organic and mineral plant compounds, and nutrient balances
    • Wachendorf M, Richter F, Fricke T, Graß R, Neff R (2009) Utilization of semi-natural grassland through integrated generation of solid fuel and biogas from biomass. I. Effects of hydrothermal conditioning and mechanical dehydration on mass flows of organic and mineral plant compounds, and nutrient balances. Grass Forage Sci 64: 132-143.
    • (2009) Grass Forage Sci , vol.64 , pp. 132-143
    • Wachendorf, M.1    Richter, F.2    Fricke, T.3    Graß, R.4    Neff, R.5


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.