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Study of the diversity of microbial communities in a sequencing batch reactor oxic-settling-anaerobic process and its modified process

机译:序批式反应器的氧沉降-厌氧过程中微生物群落多样性及其改进过程的研究

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摘要

To further reveal the mechanism of sludge reduction in the oxic-settling-anaerobic (OSA) process, the polymerase chain reaction - denaturing gradient gel electrophoresis protocol was used to study the possible difference in the microbial communities between a sequencing batch reactor (SBR)-OSA process and its modified process, by analyzing the change in the diversity of the microbial communities in each reactor of both systems. The results indicated that the structure of the microbial communities in aerobic reactors of the 2 processes was very different, but the predominant microbial populations in anaerobic reactors were similar. The predominant microbial population in the aerobic reactor of the SBR-OSA belonged to Burkholderia cepacia, class Betaproteobacteria, while those of the modified process belonged to the classes Alphaproteobacteria, Betaproteobacteria, and Gammaproteobacteria. These 3 types of microbes had a cryptic growth characteristic, which was the main cause of a greater sludge reduction efficiency achieved by the modified process.
机译:为了进一步揭示在氧沉降-厌氧(OSA)过程中污泥减少的机制,使用了聚合酶链反应-变性梯度凝胶电泳方案研究了分批测序反应器(SBR)-之间的微生物群落差异。通过分析两个系统每个反应器中微生物群落多样性的变化,确定OSA过程及其改进过程。结果表明,两种工艺的好氧反应器中微生物群落结构差异很大,但厌氧反应器中主要微生物种群相似。在SBR-OSA的好氧反应器中,主要微生物种群为洋葱伯克霍尔德菌,属于β变形杆菌,而经过改良的微生物属于Alproteobacteria,Beta变形细菌和Gamma变形细菌。这三种类型的微生物具有隐秘的生长特性,这是通过改良工艺获得更高污泥减少效率的主要原因。

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