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Qualitative Analysis of Microbial Dynamics during Anaerobic Digestion of Microalgal Biomass in a UASB Reactor

机译:UASB反应器中微藻生物质厌氧消化过程中微生物动力学的定性分析

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摘要

Anaerobic digestion (AD) is a microbiologically coordinated process with dynamic relationships between bacterial players. Current understanding of dynamic changes in the bacterial composition during the AD process is incomplete. The objective of this research was to assess changes in bacterial community composition that coordinates with anaerobic codigestion of microalgal biomass cultivated on municipal wastewater. An upflow anaerobic sludge blanket reactor was used to achieve high rates of microalgae decomposition and biogas production. Samples of the sludge were collected throughout AD and extracted DNA was subjected to next-generation sequencing using methanogen mcrA gene specific and universal bacterial primers. Analysis of the data revealed that samples taken at different stages of AD had varying bacterial composition. A group consisting of Bacteroidales, Pseudomonadales, and Enterobacteriales was identified to be putatively responsible for the hydrolysis of microalgal biomass. The methanogenesis phase was dominated by Methanosarcina mazei. Results of observed changes in the composition of microbial communities during AD can be used as a road map to stimulate key bacterial species identified at each phase of AD to increase yield of biogas and rate of substrate decomposition. This research demonstrates a successful exploitation of methane production from microalgae without any biomass pretreatment.
机译:厌氧消化(AD)是一种微生物协调的过程,在细菌参与者之间具有动态关系。目前对AD过程中细菌组成的动态变化的了解还不完整。这项研究的目的是评估细菌群落组成的变化,该变化与在城市废水中培养的微藻生物质的厌氧共消化相协调。上流厌氧污泥床反应器用于实现高速率的微藻类分解和沼气生产。在整个AD中收集污泥样品,并使用产甲烷菌mcrA基因特异性和通用细菌引物对提取的DNA进行下一代测序。数据分析表明,在AD的不同阶段采集的样品具有不同的细菌组成。经鉴定,由拟杆菌,假单胞菌和肠杆菌组成的组被认为负责微藻生物质的水解。产甲烷期主要由马氏甲烷八叠球菌(Methanosarcina mazei)主导。在AD期间观察到的微生物群落组成变化的结果可以用作路线图,以刺激在AD的每个阶段确定的关键细菌物种,从而增加沼气的产量和底物分解的速率。这项研究表明,无需任何生物量预处理即可成功利用微藻生产甲烷。

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