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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Recognition of core microbial communities contributing to complex organic components degradation during dry anaerobic digestion of chicken manure
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Recognition of core microbial communities contributing to complex organic components degradation during dry anaerobic digestion of chicken manure

机译:核心微生物群落的核心微生物群体在鸡粪干燥厌氧消化期间有助于复合有机成分降解

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摘要

Microbial metabolism of complex organic components can drive different microbial communities, which is significant to the process of dry anaerobic digestion (AD). However, possible mechanisms between organic components and the corresponding microbial communities during the process of dry AD is poorly investigated. Results showed that the microbial species affecting the degradation of organic components were 69 nodes (13.3%) in the hydrolysis stage, hemicellulose was mainly degraded by Methanobacterium (2.3%), with a degradation rate of 35.0%. In the acetogenesis stage, the microbial species were 27 nodes (10.3%), hemicellulose was mainly degraded by LK-44f (0.1%) and Treponema (0.3%), with a degradation rate of 52.2%. In the methanogenesis stage, the microbial species were 10 nodes (4.8%), polysaccharide was mainly degraded by Ureibacillus (0.1%), with a degradation rate of 46.9%. The study provides theoretical support for the rapid degradation of complex components by segment-oriented regulation.
机译:复杂有机组分的微生物代谢可以驱动不同的微生物群落,这对于干燥厌氧消化(AD)的过程具有重要意义。然而,在干燥广告过程中有机成分和相应的微生物群落之间的可能机制较差。结果表明,影响有机组分降解的微生物物种在水解阶段中为69个节点(13.3%),半纤维素主要由甲基杆菌(2.3%)降解,降解速率为35.0%。在乙酰胺阶段,微生物物种为27个节点(10.3%),半纤维素主要通过LK-44F(0.1%)和串珠(0.3%)降解,降解速率为52.2%。在甲烷发生阶段,微生物物种为10个节点(4.8%),多糖主要由ureibacillus(0.1%)降解,降解速率为46.9%。该研究提供了通过面向分段的调节对复杂组分的快速降解的理论支持。

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