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Improving nitrogen removal in biological aeration filter for domestic sewage treatment via adjusting microbial community structure

机译:通过调整微生物群落结构改善国内污水处理的生物曝气过滤器中的氮去除

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The rapid growth of nitrite-oxidizing bacteria (NOB) in reactor prevents the application of anaerobic ammonium oxidation (anammox) technology to main-stream wastewater treatment. How to eliminate NOB and reserve anaerobic ammonium oxidation bacteria (AnAOB) simultaneously becomes the biggest challenge. In this study two coupled biological aeration filters (BAFs) were built up to treat domestic sewage. In BAF1 nitrogen removal concentration was 21.4 mg/L via heterotrophic denitrification pathway. Backwash was conducted to BAF2 to improve nitrogen removal performance. After backwash Nitrospira proportion declined from 10.8% to 2.1%, while Candidatus Kuenenia percentage increased from 5.6% to 10.2%. Nitrogen removal concentration improved from 8.6 mg/L to 22.8 mg/L via anammox pathway in BAF2, and total nitrogen removal concentration reached to 44.2 mg/L in two coupled BAFs during aeration process. These findings could provide a new strategy for the application of anammox technology to main-stream wastewater treatment.
机译:反应器中亚硝酸盐氧化细菌(NOB)的快速生长可防止厌氧氧化(厌氧)技术在主流废水处理中的应用。如何消除NOB和预留厌氧氧化细菌(ANAOB)同时成为最大的挑战。在这项研究中,建立了两种耦合的生物曝气过滤器(BAF)以治疗生活污水。在BAF1中,通过异养反硝化途径,氮去除浓度为21.4mg / L.对BAF2进行后洗涤以改善氮气去除性能。反冲洗后的氮气比例从10.8%下降至2.1%,而Candidatus Kuenenia百分比从5.6%增加到10.2%。通过BAF2中的厌氧途径从8.6mg / L至22.8mg / L的氮去除浓度从8.6mg / l至22.8mg / l提高,并且在通气过程中,在两个偶联的BAF中达到了44.2mg / L的总氮去除浓度。这些发现可以提供厌氧技术在主流废水处理中应用厌氧技术的新策略。

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