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Effects of various feedstocks on isotope fractionation of biogas and microbial community structure during anaerobic digestion

机译:各种原料对厌氧消化过程中沼气同位素分馏和微生物群落结构的影响

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Feedstock type influences bacterial and methanogenic communities in anaerobic digestion. These two communities work tightly to maintain the stability of anaerobic digestion. How to quick report the changes of microbial community structure especially methanogenesis is the key issue for optimizing anaerobic digestion process. In this study, C-13 isotope fractionations of CH4 and CO2 in biogas and microbial community composition were analyzed in 5 different feedstocks. Our results showed that grass silage, maize silage and swine manure fed reactors had similar delta C-13 values and methanogenic community composition, dominated by Met hanosarcinaceae. The lowest delta (CH4)-C-13 values were detected in straw and chicken manure fed reactors, reflecting reduced microbial degradation of material or the presence of toxic components in these feedstocks. The straw fed bioreactor lead to low delta (CH4)-C-13 values, probably reflecting relatively high levels of the syntrophic acetate oxidizing bacteria, Synergistaceae and Syntrophaceae, which might work collectively with hydrogenotrophic methanogens, resulting in the low delta (CH4)-C-13 values in this bioreactor. Significantly, all core microbes in the 5 different feedstock fed bioreactors were either Clostridia species or related to the Synergistaceae (syntrophic acetate oxidizing bacteria). (C) 2018 Elsevier Ltd. All rights reserved.
机译:原料类型在厌氧消化中影响细菌和产甲烷菌群落。这两个社区紧密合作,以维持厌氧消化的稳定性。如何快速报告微生物群落结构的变化,特别是甲烷生成,是优化厌氧消化过程的关键问题。在这项研究中,分析了5种不同原料中​​沼气中CH4和CO2的C-13同位素分馏和微生物群落组成。我们的结果表明,青贮青贮饲料,玉米青贮饲料和猪粪饲喂反应器具有相似的δC-13值和产甲烷菌群落组成,主要由大都会红球菌科所控制。在秸秆和鸡粪饲喂的反应器中检测到最低的delta(CH4)-C-13值,反映了这些原料中微生物降解的降低或有毒成分的存在。用稻草喂食的生物反应器导致低(CH4)-C-13值,这可能反映了较高水平的乙酸增生氧化菌,增效菌和同食菌科,它们可能与氢营养型产甲烷菌共同起作用,从而导致低δ(CH4)-该生物反应器中的C-13值。值得注意的是,在5种不同原料供料的生物反应器中,所有核心微生物均是梭状芽胞杆菌属物种,或与增效科(醋酸增氧氧化细菌)有关。 (C)2018 Elsevier Ltd.保留所有权利。

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