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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Resuscitation of functional bacterial community for enhancing biodegradation of phenol under high salinity conditions based on Rpf
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Resuscitation of functional bacterial community for enhancing biodegradation of phenol under high salinity conditions based on Rpf

机译:基于RPF的高盐度条件下,复苏功能细菌群落以提高苯酚生物降解

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摘要

This study assumed that key degraders of functional bacterial community were prone to enter into the viable but non-culturable (VBNC) state under high saline phenolic conditions, and resuscitation-promoting factor (Rpf) could strengthen these degraders for better performances. Based on these assumptions, Rpf was used to enhance salt-tolerant phenol-degrading capability of functional populations in activated sludge. Results suggested that Rpf accelerated the start-up process during sludge domestication, and significantly enhanced salt-tolerant phenol-degrading capability. High-throughput sequencing showed that the resuscitation and stimulation functions of Rpf linked mainly to the genus Corynebacterium within the phylum Actinobacteria, and the genera Proteiniphilum and Petrimonas within the phylum Bacteroidete. These key functional populations contributed to better phenol-degrading capabilities under high salinity conditions. This study indicated that Rpf is a promising additive for improving biological treatment performance of saline phenolic wastewater.
机译:本研究假设功能性细菌群落的关键降解在高盐水酚类条件下易于进入可行但非培养的(VBNC)状态,重新刺激促进因子(RPF)可以加强这些降解剂以获得更好的表现。基于这些假设,RPF用于增强活性污泥中功能群的耐盐酚类降解能力。结果表明,RPF在污泥驯化过程中加速了启动过程,并显着提高了耐盐性酚类降解能力。高通量测序表明,RPF的复苏和刺激函数主要连接到肌腱菌的棒状杆菌属,以及在Phylum Bacteroidete内的Genera Proteiniphilum和Petrimonas。这些关键的功能群体在高盐度条件下有助于更好的酚类降解能力。本研究表明,RPF是一种有助于添加剂,用于改善盐水酚醛废水的生物处理性能。

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