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Cultivation of denitrifying anaerobic methane-oxidizing microorganisms in a continuous-flow sponge bioreactor

机译:在连续流动海绵生物反应器中培养反硝化厌氧甲烷氧化微生物

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Anaerobic treatment of sewage has many advantages; however, the effluent contains high levels of dissolved methane. In this study, we investigated the use of a closed-type downflow hanging sponge (DHS) reactor for application of the denitrifying anaerobic methane oxidation (DAMO) reaction for nitrogen and dissolved methane removal. When using nitrate, the DAMO reaction achieved a denitrification rate of 84.4 g N m(-3) day(-1), which is close to that required for practical application of denitrification to anaerobic sewage treatment. The microbial community that developed in the DHS was investigated using16S rRNA, and novel species of DAMO bacteria affiliated with Group b of NC10 phylum were enriched. This contrasted with the results of previous studies in which the Candidatus Methylomirabilis oxyfera affiliated with Group a was enriched. The results obtained herein suggest that a post-treatment system for anaerobically treated sewage using a closed-type DHS reactor may become practical in the near future.
机译:污水的厌氧处理有很多优点;然而,流出物含有高水平的溶解甲烷。在这项研究中,我们研究了使用闭合型下流悬挂海绵(DHS)反应器用于施加反硝化厌氧甲烷氧化(DAMO)反应的氮,并溶解甲烷去除。当使用硝酸盐时,DAMO反应达到84.4g n m(-3)天(-1)的脱氮率,这与实际应用反硝化对厌氧污水处理所需的反硝化率接近。研究了DHS中开发的微生物群落使用了16S rRNA,富集了与NC10 Phylum组B组隶属化的Damo细菌的新种。这与先前研究的结果形成鲜明对比,其中富含了与A组甲基甲基咪唑is0axivera的甲基甲基咪唑。本文获得的结果表明,使用闭合式DHS反应器的厌氧处理污水后处理系统可能在不久的将来变得实用。

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