2010, ISBN: 3838399714, Lieferbar binnen 4-6 Wochen Versandkosten:Versandkostenfrei innerhalb der BRD
Internationaler Buchtitel. In englischer Sprache. Verlag: LAP Lambert Acad. Publ. Paperback, 92 Seiten, L=220mm, B=150mm, H=6mm, Gew.=153gr, [GR: 16860 - HC/Bau- und Umwelttechnik], Kartoniert/Broschiert, Klappentext: Ethanol production from green waste can be useful in helping solve the current energy crisis, food crisis and climate change. During the bioconversion process, enzymatic hydrolysis, which converts hemicelluloses and celluloses to reducing sugar, was focused on. Hence, the fermentation of reducing sugar to ethanol is more easily carried out once high reducing sugar yield is obtained. The objective of this research was to identify the most effective microbial community in the process of bioconversion of green wastes to reducing sugars. The effectiveness of the best microbial community was further investigated by comparing different pretreatment methods and environmental conditions. Two low-cost pretreatment methods: Organosolv process and Liquid hot-water pretreatment (LHW) were compared to break down the high stability of lignocelluloses biomass. In addition, the temperature, pH value, and initial carbon concentration of aerobic microbial culture medium were adjusted in order to obtain the highest concentration of reducing sugar. Ethanol production from green waste can be useful in helping solve the current energy crisis, food crisis and climate change. During the bioconversion process, enzymatic hydrolysis, which converts hemicelluloses and celluloses to reducing sugar, was focused on. Hence, the fermentation of reducing sugar to ethanol is more easily carried out once high reducing sugar yield is obtained. The objective of this research was to identify the most effective microbial community in the process of bioconversion of green wastes to reducing sugars. The effectiveness of the best microbial community was further investigated by comparing different pretreatment methods and environmental conditions. Two low-cost pretreatment methods: Organosolv process and Liquid hot-water pretreatment (LHW) were compared to break down the high stability of lignocelluloses biomass. In addition, the temperature, pH value, and initial carbon concentration of aerobic microbial culture medium were adjusted in order to obtain the highest concentration of reducing sugar.
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ISBN: 9783838399713
Ethanol production from green waste can be useful in helping solve the current energy crisis, food crisis and climate change. During the bioconversion process, enzymatic hydrolysis, which converts hemicelluloses and celluloses to reducing sugar, was focused on. Hence, the fermentation of reducing sugar to ethanol is more easily carried out once high reducing sugar yield is obtained. The objective of this research was to identify the most effective microbial community in the process of bioconversion of green wastes to reducing sugars. The effectiveness of the best microbial community was further investigated by comparing different pretreatment methods and environmental conditions. Two low-cost pretreatment methods: Organosolv process and Liquid hot-water pretreatment (LHW) were compared to break down the high stability of lignocelluloses biomass. In addition, the temperature, pH value, and initial carbon concentration of aerobic microbial culture medium were adjusted in order to obtain the highest concentration of reducing sugar. Textbooks New Books ~~ Technology~~ Environmental ~~ General Optimization-of-Bio-conversion-of-Green-Waste-to-Reducing-Sugar~~Bernard-Ng AV Akademikerverlag GmbH & Co. KG. Ethanol production from green waste can be useful in helping solve the current energy crisis, food crisis and climate change. During the bioconversion process, enzymatic hydrolysis, which converts hemicelluloses and celluloses to reducing sugar, was focused on. Hence, the fermentation of reducing sugar to ethanol is more easily carried out once high reducing sugar yield is obtained. The objective of this research was to identify the most effective microbial community in the process of bioconversion of green wastes to reducing sugars. The effectiveness of the best microbial community was further investigated by comparing different pretreatment methods and environmental conditions. Two low-cost pretreatment methods: Organosolv process and Liquid hot-water pretreatment (LHW) were compared to break down the high stability of lignocelluloses biomass. In addition, the temperature, pH value, and initial carbon concentration of aerobic microbial culture medium were adjusted in order to obtain the highest concentration of reducing sugar.
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2010, ISBN: 9783838399713
[ED: Taschenbuch / Paperback], [PU: LAP Lambert Academic Publishing], Ethanol production from green waste can be useful in helping solve the current energy crisis, food crisis and climate change. During the bioconversion process, enzymatic hydrolysis, which converts hemicelluloses and celluloses to reducing sugar, was focused on. Hence, the fermentation of reducing sugar to ethanol is more easily carried out once high reducing sugar yield is obtained. The objective of this research was to identify the most effective microbial community in the process of bioconversion of green wastes to reducing sugars. The effectiveness of the best microbial community was further investigated by comparing different pretreatment methods and environmental conditions. Two low-cost pretreatment methods: Organosolv process and Liquid hot-water pretreatment (LHW) were compared to break down the high stability of lignocelluloses biomass. In addition, the temperature, pH value, and initial carbon concentration of aerobic microbial culture medium were adjusted in order to obtain the highest concentration of reducing sugar., DE, [SC: 0.00], Neuware, gewerbliches Angebot, 92, Selbstabholung und Barzahlung, PayPal, offene Rechnung, Banküberweisung, Transporte marítimo internacional
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2010, ISBN: 9783838399713
[ED: Taschenbuch / Paperback], [PU: LAP Lambert Academic Publishing], Ethanol production from green waste can be useful in helping solve the current energy crisis, food crisis and climate change. During the bioconversion process, enzymatic hydrolysis, which converts hemicelluloses and celluloses to reducing sugar, was focused on. Hence, the fermentation of reducing sugar to ethanol is more easily carried out once high reducing sugar yield is obtained. The objective of this research was to identify the most effective microbial community in the process of bioconversion of green wastes to reducing sugars. The effectiveness of the best microbial community was further investigated by comparing different pretreatment methods and environmental conditions. Two low-cost pretreatment methods: Organosolv process and Liquid hot-water pretreatment (LHW) were compared to break down the high stability of lignocelluloses biomass. In addition, the temperature, pH value, and initial carbon concentration of aerobic microbial culture medium were adjusted in order to obtain the highest concentration of reducing sugar., DE, [SC: 0.00], Neuware, gewerbliches Angebot, 92, Selbstabholung und Barzahlung, PayPal, offene Rechnung, Banküberweisung, Internationaler Versand
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ISBN: 3838399714
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2010, ISBN: 3838399714, Lieferbar binnen 4-6 Wochen Versandkosten:Versandkostenfrei innerhalb der BRD
Internationaler Buchtitel. In englischer Sprache. Verlag: LAP Lambert Acad. Publ. Paperback, 92 Seiten, L=220mm, B=150mm, H=6mm, Gew.=153gr, [GR: 16860 - HC/Bau- und Umwelttechnik], Karto… Mehr…
ISBN: 9783838399713
Ethanol production from green waste can be useful in helping solve the current energy crisis, food crisis and climate change. During the bioconversion process, enzymatic hydrolysis, which… Mehr…
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ISBN: 9783838399713
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2010, ISBN: 9783838399713
[ED: Taschenbuch / Paperback], [PU: LAP Lambert Academic Publishing], Ethanol production from green waste can be useful in helping solve the current energy crisis, food crisis and climate… Mehr…
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Detailangaben zum Buch - Optimization of Bio-conversion of Green Waste to Reducing Sugar
EAN (ISBN-13): 9783838399713
ISBN (ISBN-10): 3838399714
Taschenbuch
Erscheinungsjahr: 2010
Herausgeber: LAP Lambert Acad. Publ.
92 Seiten
Gewicht: 0,153 kg
Sprache: eng/Englisch
Buch in der Datenbank seit 2009-06-05T18:42:31+02:00 (Berlin)
Detailseite zuletzt geändert am 2019-08-08T17:41:02+02:00 (Berlin)
ISBN/EAN: 9783838399713
ISBN - alternative Schreibweisen:
3-8383-9971-4, 978-3-8383-9971-3
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