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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Microbial community in in-situ waste sludge anaerobic digestion with alkalization for enhancement of nutrient recovery and energy generation
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Microbial community in in-situ waste sludge anaerobic digestion with alkalization for enhancement of nutrient recovery and energy generation

机译:用于原位废弃物污泥的微生物群落厌氧消化,用于增强营养回收和能量产生的碱化

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摘要

Microbial community in in-situ waste sludge anaerobic digestion with alkalization for enhancement of nutrient recovery and energy generation was studied. Firmicutes, Proteobacteria and Bacteroidetes phylum became the majority in the microbial community, especially Firmicutes showed the predominate role in the community due to its thick cell wall structure, potential ability hydrolysis and hydrogenogenic acidogenesis. Anaerobic digestion with alkalization caused the obvious microbial diversity decrease, and over 50% of minority bacteria grew up in quantity from original sludge. Phylum of Firmicutes developed by themselves having few interactions with other bacteria, partly contributing to its rapid growth in anaerobic digestion with alkalization. The decrease of hydrocarbon degradation, and the increase of both fermentation and reductive acetogenesis in microbial community, indicating the promotion of short chain fatty acids production, especially acetic acid which is the key intermediate products for nutrient recovery and energy generation.
机译:研究了对原位废物污泥的微生物群体,厌氧消化用碱化以提高营养回收和能量产生。 Framicutes,Proteobacteria和Bacteroides Phylum成为微生物群落中的大多数,特别是由于其厚的细胞壁结构,潜在的能力水解和氢化酸性发生,因此尤其是群体中的主要作用。厌氧消化用碱化引起明显的微生物多样性降低,50%以上的少数群体从原始污泥的数量增长。本身开发的骨骼的门外与其他细菌相互作用,部分地有助于其碱化消化的快速增长。烃劣化的降低,以及微生物群落中发酵和还原乙酰丙酮的增加,表明促进短链脂肪酸产生,尤其是醋酸,这是用于营养回收和能量产生的关键中间产物。

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