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首页> 外文期刊>International journal of hydrogen energy >Biohythane production from Chlorella sp biomass by two-stage thermophilic solid-state anaerobic digestion
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Biohythane production from Chlorella sp biomass by two-stage thermophilic solid-state anaerobic digestion

机译:两阶段热固性厌氧消化从小球藻生物质生产生物乙叉

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摘要

Two-stage thermophilic solid state anaerobic digestion (SS-AD) processes for biohythane production from Chlorella sp. biomass was investigated. The hydrogen and methane yield from fresh Chlorella sp. biomass was 124.9 mL H-2 gVS(-1) and 230.1 mL CH4 gVS(-1), respectively, at 16% TS with biodegradation efficiency of 34%. Hydrogen and methane production from hydrothermal pretreated Chlorella sp. biomass was 190.0 mL H-2 gVS(-1) and 319.8 mL CH4 gVS(-)1, respectively at 16% TS with biodegradation efficiency of 47%. Pretreatment of Chlorella sp. biomass with hydrothermal follow by two-stage thermophilic SS-AD improved 150% biogas production comparing with fresh biomass. Clostridium sp. was the main bacteria responsible for hydrogen production. Clostridium sp. and Ruminococcus sp. was main bacteria in methane stage, while Methanoculleus sp. and Methanothermobacter sp. was dominated archaea in methane production process. Chlorella sp. biomass with hydrothermal pretreatment has great potential for hydrogen and methane production via two-stage thermophilic SS-AD. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:两级嗜热固态厌氧消化(SS-AD)工艺,用于从小球藻中生产生物丙烷。研究了生物量。新鲜小球藻菌种产生的氢气和甲烷。在16%TS时生物量分别为124.9 mL H-2 gVS(-1)和230.1 mL CH4 gVS(-1),生物降解效率为34%。由水热预处理的小球藻产生的氢气和甲烷。 TS在16%时生物量分别为190.0 mL H-2 gVS(-1)和319.8 mL CH4 gVS(-)1,生物降解效率为47%。小球藻的预处理与新鲜生物质相比,热液生物质后跟两步热解SS-AD可提高150%的沼气产量。梭状芽胞杆菌是负责制氢的主要细菌。梭状芽胞杆菌和Ruminococcus sp。是甲烷阶段的主要细菌,而甲烷菌则是甲烷。和甲烷杆菌属。在甲烷生产过程中,古细菌占主导地位。小球藻经过水热预处理的生物质通过两步热解SS-AD具有生产氢气和甲烷的巨大潜力。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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