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Evaluating digestion efficiency in full-scale anaerobic digesters by identifying active microbial populations through the lens of microbial activity

机译:通过微生物活性的鉴定来鉴定活性微生物种群从而评估全规模厌氧消化器的消化效率

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摘要

Anaerobic digestion is a common technology to biologically stabilize wasted solids produced in municipal wastewater treatment. Its efficiency is usually evaluated by calculating the reduction in volatile solids, which assumes no biomass growth associated with digestion. To determine whether this assumption is valid and further evaluate digestion efficiency, this study sampled 35 digester sludge from different reactors at multiple time points together with the feed biomass in a full-scale water reclamation plant at Chicago, Illinois. The microbial communities were characterized using Illumina sequencing technology based on 16S rRNA and 16S rRNA gene (rDNA). 74 core microbial populations were identified and represented 58.7% of the entire digester community. Among them, active populations were first identified using the ratio of 16S rRNA and 16S rDNA (rRNA/rDNA) for individual populations, but this approach failed to generate consistent results. Subsequently, a recently proposed mass balance model was applied to calculate the specific growth rate (μ), and this approach successfully identified active microbial populations in digester (positive μ) that could play important roles than those with negative μ. It was further estimated that 82% of microbial populations in the feed sludge were digested in comparison with less than 50% calculated using current equations.
机译:厌氧消化是一种生物稳定市政污水处理过程中产生的废固体的常用技术。通常通过计算挥发性固体的减少量来评估其效率,这假定没有与消化相关的生物量增长。为了确定该假设是否有效并进一步评估消化效率,本研究在伊利诺伊州芝加哥的一家大型水回收厂中,从多个时间点的不同反应器中取样了35种消化器污泥以及进料生物质。使用基于16S rRNA和16S rRNA基因(rDNA)的Illumina测序技术对微生物群落进行了表征。确定了74个核心微生物种群,占整个消化器群落的58.7%。其中,首先使用单个人群的16S rRNA和16S rDNA的比率(rRNA / rDNA)鉴定活跃人群,但是这种方法未能产生一致的结果。随后,采用了最近提出的质量平衡模型来计算比生长速率(μ),该方法成功地确定了消化池中的活性微生物种群(正μ),其作用可能比负μ的重要。进一步估计,进料污泥中的微生物种群中有82%被消化,而使用当前方程式计算的微生物种群少于50%。

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