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Autotrophic Nitrogen Removal in a Membrane-Aerated Biofilm Reactor Under Continuous Aeration: A Demonstration

机译:膜膜曝气生物膜反应器在连续曝气条件下自养脱氮的实验研究

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This work describes the successful coupling of partial nitrification (nitritation) and anaerobic ammonium oxidation in a membrane-aerated biofilm reactor (MABR) with continuous aeration. Controlling the relative surface loadings of oxygen versus ammonium prevented complete nitrite oxidation and allowed anaerobic ammonium-oxidizing bacteria (AnaerAOB) to develop and be retained for >250 days. Daily autotrophic nitrogen removal of 1.7 g N/m2 (75% of influent N load) was achieved at an oxygenitrogen surface loading ratio of 2.2, with up to 85% of the influent N proceeding through AnaerAOB. During early nitritation, nitrogen oxide (NO(g), NO2(g), and N2O(g)) emissions comprised up to 10% of the removed influent nitrogen, but emissions disappeared after proliferation of AnaerAOB. Microbial communities were radially stratified, with aerobic ammonium-oxidizing bacteria (AerAOB) colonizing nearest to and AnaerAOB furthest from the membrane. Despite the presence of nitrite-oxidizing bacteria, this work demonstrated that these autotrophic processes can be successfully coupled in an MABR with continuous aeration, achieving the benefits of competitive specific N removal rates and the elimination of gaseous nitrogen oxide emissions.
机译:这项工作描述了在膜曝气生物膜反应器(MABR)中通过连续曝气成功实现部分硝化(硝化)和厌氧铵氧化的耦合。控制氧气相对于铵的相对表面负载可防止亚硝酸盐完全氧化,并使厌氧铵氧化细菌(AnaerAOB)发育并保留> 250天。在氧气/氮气表面负载比为2.2的情况下,每天的自养氮去除量为1.7µg N / m2(75%的进水氮),其中高达85%的进水氮通过AnaerAOB进行。在早期硝化过程中,氮氧化物(NO(g),NO2(g)和N2O(g))排放物最多占去除的流入氮的10%,但在AnaerAOB增殖后排放物消失了。微生物群落呈放射状分层,其中有氧铵氧化细菌(AerAOB)移居到最靠近膜的地方,而AnaerAOB移到离膜最远的地方。尽管存在亚硝酸盐氧化细菌,但这项工作表明,这些自养过程可以成功地在MABR中连续充气,从而获得具有竞争力的特定N去除速率和消除气态氮氧化物排放的好处。

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