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Study of an innovative anaerobic (A)/oxic (O)/anaerobic (A) bioreactor (based on denitrification-anammox technology treating low C/N municipal sewage

机译:新型厌氧(A)/氧气(O)/厌氧(A)生物反应器的研究(基于反硝化-厌氧氨技术处理低C / N市政污水)

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In this study, an integrated anaerobic hydrolysis (A)itriflcation (0)/denitrification-anammox (den-anammox) (A) fixed-bed baffled bioreactor was constructed to treat low C/N (COD/NH4-N) municipal sewage. With the influent C0D/NH4-N of 1.38-5.01, the average TN and COD removal percentages of bioreactor arrived to 89.9% and 91.5% under the room temperature (25 °C). By the innovative design (partial nitrification, den-anammox technology and no sludge returning), the A/O/A bioreactor can theoretically save at least 54.2% of energy consumption (calculated by aeration quantity) compared with traditional nitrification-denitrification process. Under the COD/NO_3~--N of 0.94-1.69, the collaborative denitrification of denitrifying bacteria and anammox bacteria was successfully achieved in the Den-Anammox Pool (DAP) of bioreactor. The maximum NH_4~+ -N and TN removal percentages of DAP arrived to 97.6% and 93.8%, respectively. The nitrogen removal contribution of den-anammox process was above 70% by mass-balance theory. DGGE (denaturing gradient gel electrophoresis) and gene sequencing results showed that the microbial community was diverse and the dominant bacteria of DAP changed from single anammox bacterium group into one group containing anammox bacterium and denitrifying bacterium by 175-day domestication. According to FISH (fluorescence in situ hybridization) results, the percentage of anammox bacterium declined from 89% to 58% in DAP.
机译:在这项研究中,构建了一体化厌氧水解(A)/硝化(0)/脱氮厌氧菌(den-anammox)(A)固定床带挡板生物反应器,以处理低C / N(COD / NH4-N)城市污水。在进水C0D / NH4-N为1.38-5.01的情况下,在室温(25°C)下,生物反应器的总TN和COD去除率分别达到89.9%和91.5%。通过创新的设计(部分硝化,den-anammox技术且无污泥回流),A / O / A生物反应器与传统的硝化-硝化工艺相比,理论上可以节省至少54.2%的能源消耗(以曝气量计算)。在0.94-1.69的COD / NO_3-〜N下,在生物反应器的Den-Anammox池(DAP)中成功实现了反硝化细菌和厌氧氨氧化菌的协同反硝化。 DAP的最大NH_4〜+ -N和TN去除率分别达到97.6%和93.8%。根据质量平衡理论,den-anammox工艺的脱氮贡献超过70%。 DGGE(变性梯度凝胶电泳)和基因测序结果表明,经过175天的驯化,DAP的微生物群落种类繁多,DAP的优势菌从单一的厌氧菌变成了含厌氧菌和反硝化菌的一组。根据FISH(荧光原位杂交)结果,DAP中厌氧氨氧化细菌的百分比从89%下降到58%。

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