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Simultaneous oxidation of ammonium and tetracycline in a membrane aerated biofilm reactor

机译:在膜充气生物膜反应器中同时氧化铵和四环素

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摘要

The membrane aerated biofilms reactor (MABR) is an emerging technology in wastewater treatment with particular advantages including high rate nitrification, and very high oxygen transfer efficiencies. In this study a synthetic feed water incorporating tetracycline (TC) was investigated in a MABR. Simultaneous removal of ammonium and tetracycline (TC) in the reactor, formation of TC transformation products (TPs), and microbial community analysis in the biofilm growing on the membrane were performed. A range of TC and ammonium loading rates and the effect of different infra-membrane oxygen pressures were on treatment performance were systematically investigated. Successful nitrification and TC degradation were achieved with the highest TC removal (63%) obtained at a HRT of 18 h HRT and 0.41 bar gas pressure. It has shown that different operating conditions (HRT and gas pressure) do not cause a significant change in ammonium removal. The concentration of TPs such as ETC, EATC, and ATC was determined to be at the ppb level. Molecular results showed that MABR reactor was mainly dominated by beta-proteobacteria. The relative abundance of this group decreased in parallel with the increasing ammonium and TC loading. (C) 2019 Elsevier B.V. All rights reserved.
机译:膜充气生物膜反应器(MABR)是一种新兴技术,其废水处理具有特殊优点,包括高零率硝化,氧气转移效率非常高。在该研究中,在MABR中研究了包含四环素(Tc)的合成饲料水。在反应器中同时除去铵和四环素(TC),进行TC转化产物(TPS)的形成,并且在膜上生长的生物膜中的微生物群落分析和微生物群落分析。系统地研究了一系列Tc和铵加载速率和不同的红外线氧气压力的效果。通过在18小时HRT和0.41巴气压的HRT中获得的最高TC去除(63%)来实现成功的硝化和TC降解。已经表明,不同的操作条件(HRT和气体压力)不会导致铵的显着变化。确定等等,Eatc和ATC等TPS的浓度在PPB水平。分子结果表明,MABR反应器主要由β-植物杀死。该组的相对丰度与增加的铵和TC负载平行下降。 (c)2019 Elsevier B.v.保留所有权利。

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