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Anaerobic digestion performance and microbial community structure of corn stover in three-stage continuously stirred tank reactors

机译:三级连续搅拌釜反应器中玉米秸秆的厌氧消化性能和微生物群落结构

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摘要

A new three-stage anaerobic digestion (TSAD) system combining the two-stage and serial continuously stirred tank reactor (CSTR) was developed for the high-efficiency anaerobic digestion (AD) of corn stover. At the same hydraulic retention time of 50 d and organic loading rate (OLR) of 1.8 g TS L-1 d (-1), TSAD achieved a 33.2-50.5% higher methane yield than that of the traditional one-stage and two-stage AD. Moreover, the TSAD process showed higher buffering ability and system stability, relieving the negative impact of serial CSTR at high OLR. It was also found that the hydrogenotrophic methanogen Methanobacteriaceae and multi-function methanogen Methanosarcinaceae were dominant, and the populations of Ruminococcaceae and Syntrophomonadaceae with the function of acetogenesis were enriched in TSAD. The results demonstrated that TSAD could be a high efficient system for converting corn stover into bioenergy.
机译:为组合两阶段和连续搅拌釜反应器(CSTR)的新的三阶段厌氧消化(TSAD)系统用于玉米秸秆的高效厌氧消化(AD)。 在50 d的液压保留时间和有机加载速率(OLR)的1.8g ts L-1 d(-1),Tsad达到比传统单阶段和两阶段的甲烷产率高33.2-50.5% 阶段广告。 此外,TSAD工艺显示出更高的缓冲能力和系统稳定性,减轻了串联CSTR在高OLR处的负面影响。 还发现,致氢脱甲酸酯甲基杆菌和多功能甲烷化甲烷类癌基因菌,富荧光癌和Syntrophomonadaceae富含乙酰物的群体富含Tsad。 结果表明,TSAD可能是将玉米秸秆转化为生物能源的高效系统。

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