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Archaeal and bacterial community dynamics and bioprocess performance of a bench-scale two-stage anaerobic digester

机译:台式两级厌氧消化池的古细菌和细菌群落动力学及生物过程性能

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摘要

Two-stage technologies have been developed for anaerobic digestion of waste-activated sludge. In this study, the archaeal and bacterial community structure dynamics and bioprocess performance of a bench-scale two-stage anaerobic digester treating urban sewage sludge have been studied by the means of high-throughput sequencing techniques and physicochemical parameters such as pH, dried sludge, volatile dried sludge, acid concentration, alkalinity, and biogas generation. The coupled analyses of archaeal and bacterial communities and physicochemical parameters showed a direct relationship between archaeal and bacterial populations and bioprocess performance during start-up and working operation of a two-stage anaerobic digester. Moreover, results demonstrated that archaeal and bacterial community structure was affected by changes in the acid/alkalinity ratio in the bioprocess. Thus, a predominance of the acetoclastic methanogen Methanosaeta was observed in the methanogenic bioreactor at high-value acid/alkaline ratio, while a predominance of Methanomassilicoccaeceae archaea and Methanoculleus genus was observed in the methanogenic bioreactor at low-value acid/alkaline ratio. Biodiversity tag-iTag sequencing studies showed that methanogenic archaea can be also detected in the acidogenic bioreactor, although its biological activity was decreased after 4 months of operation as supported by physicochemical analyses. Also, studies of the VFA producers and VFA consumers microbial populations showed as these microbiota were directly affected by the physicochemical parameters generated in the bioreactors. We suggest that the results obtained in our study could be useful for future implementations of two-stage anaerobic digestion processes at both bench- and full-scale.
机译:已经开发了用于厌氧消化废物活化污泥的两阶段技术。在这项研究中,已通过高通量测序技术和理化参数(例如pH值,干式污泥,生物质,有机物等)研究了台式规模两级厌氧消化池处理城市污水污泥的古细菌和细菌群落结构动力学以及生物过程性能。挥发性干污泥,酸浓度,碱度和沼气生成。对古细菌和细菌群落以及理化参数的耦合分析表明,在两级厌氧消化池启动和工作过程中古细菌和细菌种群与生物过程性能之间存在直接关系。此外,结果表明,在生物过程中,古细菌和细菌的群落结构受到酸/碱度比变化的影响。因此,在产甲烷生物反应器中,以高值酸/碱比占优势的碎裂甲烷产甲烷菌甲烷菌,而在产甲烷生物反应器中以低值酸/碱比占优势的产甲烷甲烷菌属和甲烷菌属。生物多样性标签-iTag测序研究表明,产酸的生物反应器中也可以检测到产甲烷的古细菌,尽管理化分析支持其操作4个月后其生物活性降低了。此外,对VFA生产者和VFA消费者微生物种群的研究表明,这些微生物群直接受到生物反应器中产生的理化参数的影响。我们建议,在我们的研究中获得的结果可能对将来在台式和全规模两阶段厌氧消化过程的实施很有用。

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