首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Microbial community shifts and biogas conversion computation during steady, inhibited and recovered stages of thermophilic methane fermentation on chicken manure with a wide variation of ammonia
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Microbial community shifts and biogas conversion computation during steady, inhibited and recovered stages of thermophilic methane fermentation on chicken manure with a wide variation of ammonia

机译:氨气变化很大的鸡粪中嗜热甲烷发酵在稳定,抑制和恢复阶段的微生物群落转移和沼气转化计算

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摘要

The thermophilic methane fermentation of chicken manure (10% TS) was investigated within a wide range of ammonia. Microbiological analysis showed significant shifts in Archaeal and Bacterial proportions with VFA accmulation and CH_4 formation before and after inhibition. VFA accumulated sharply with lower methane production, 0.29 L/g VS, than during the steady stage, 0.32L/g VS. Biogas production almost ceased with the synergy inhibition of TAN (8000mg/L) and VFA (25,000mg/L). Hydrogenotrophic Methanothermobacter thermautotrophicus str. was the dominate archaea with 95% in the inhibition stage and 100% after 40days recovery compared to 9.3% in the steady stage. Aceticlastic Methanosarcina was not encountered with coincided phenomenal of high VFA in the inhibition stage as well as recovery stage. Evaluation of the microbial diversity and functional bacteria indicated the dominate phylum of Firmicutes were 94.74% and 84.4% with and without inhibition. The microbial community shifted significantly with elevated ammonia concentration affecting the performance.
机译:在宽范围的氨气中研究了鸡粪(10%TS)的嗜热甲烷发酵。微生物学分析显示,抑菌前后,VFA积累和CH_4形成,古细菌和细菌的比例发生了显着变化。 VFA在甲烷生成量较低的情况下急剧积累,为0.29 L / g VS,而在稳定阶段则为0.32L / gVS。 TAN(8000mg / L)和VFA(25,000mg / L)的协同抑制作用几乎停止了沼气的生产。氢营养型甲烷嗜热菌自养营养菌str。是主要古细菌,在抑制阶段为95%,在恢复40天后为100%,而在稳定阶段为9.3%。在抑制期和恢复期都没有遇到高弹性脂肪酸的同时出现乙炔甲甲烷菌。对微生物多样性和功能性细菌的评估表明,有或没有抑制作用的沙门氏菌的主要门类分别为94.74%和84.4%。随着氨浓度的升高,微生物群落发生了明显变化,从而影响了性能。

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