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Microbial community dynamics in continuous microbial fuel cells fed with synthetic wastewater and pig slurry

机译:用合成废水和猪粪便喂养的连续微生物燃料电池中的微生物群落动态

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Two-chambered microbial fuel cells (MFCs) operating with synthetic wastewater and pig slurry were assessed. Additionally, the use of 2-bromoethanesulfonate (BES-Inh) was studied. The synthetic wastewater-fed MFC (MFCsw) showed a maximum power density (PDmax) of 2138 mW m(-3), and the addition of BES-Inh (10 mM) did not show any improvement in its performance (PDmax = 2078 mW m(-3)). When pig slurry was used as feed (MFCPS), PDmax increased up to 5623 mW m(-3). The microbial community composition was affected by the type of substrate used. While, Pseudomonadaceae and Clostridiaceae were the most representative families within the acetate-based medium, Flavobacteriaceae, Chitinophagaceae, Comamonadaceae and Nitrosomonadaceae were predominant when pig slurry was used as feed. Otherwise, only the Eubacterial microbial community composition was strongly modified when adding BES-Inh, thus leading to an enrichment of the Bacteroidetes phylum. Oppositely, the Archaeal community was less affected by the addition of BES-Inh, and Methanosarcina sp., arose as the predominant family in both situations. Despite all the differences in microbial communities, 6 operational taxonomic units (OTUs) belonging to Bacteroidetes (Porphyromonadaceae and Marinilabiaceae) and Firmicutes (Clostridiales) were found to be common to both MFCs, also for different contents of COD and N-NH4+, and therefore could be considered as the bioanode core microbiome. (C) 2016 Elsevier B.V. All rights reserved.
机译:评估了使用合成废水和猪粪的两室微生物燃料电池(MFCs)。另外,研究了2-溴乙烷磺酸盐(BES-Inh)的使用。合成废水进料的MFC(MFCsw)的最大功率密度(PDmax)为2138 mW m(-3),添加BES-Inh(10 mM)并没有表现出任何性能改善(PDmax = 2078 mW) m(-3))。当将猪粪浆用作饲料(MFCPS)时,PDmax增加到5623 mW m(-3)。微生物群落组成受所用底物类型的影响。假单胞菌科和梭菌科是醋酸盐基培养基中最具代表性的科,而以猪粪浆为饲料时,黄杆菌科,几丁质菌科,Comamonadaceae和Nitrosomonadaceae是主要的。否则,当添加BES-Inh时,只有真细菌微生物群落组成会被强烈修饰,从而导致门生拟杆菌的富集。相反,BES-Inh的加入对古细菌群落的影响较小,而在这两种情况下,作为主要家庭的甲烷菌属(Methanosarcina sp。)都出现了。尽管微生物群落之间存在所有差异,但发现两种微生物都共有6个属于拟杆菌科(卟啉单胞菌科和滨唇科)和菌毛纲(克氏菌)的操作生物分类单位(OTU),这两种化学物质对于COD和N-NH4 +的含量也不同,因此可以认为是生物阳极核心微生物组。 (C)2016 Elsevier B.V.保留所有权利。

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