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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Integration of denitrifying phosphorus removal via nitrite pathway, simultaneous nitritation–denitritation and anammox treating carbon-limited municipal sewage
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Integration of denitrifying phosphorus removal via nitrite pathway, simultaneous nitritation–denitritation and anammox treating carbon-limited municipal sewage

机译:通过亚硝酸盐途径脱氮除磷,同时硝化-反硝化和厌氧氨处理限制碳的城市污水的集成

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High nutrients removal above 90% from carbon-limited municipal sewage was obtained without adding external carbon source. Achieving nitritation was a prerequisite to improve nutrients removal. Denitrifying phosphorus (P) removal using nitrite as electron acceptor was the key pathway in anoxic zone, where nitrogen removal reached above 60% and average denitrifying P removal was 88%. Simultaneous nitritation/denitritation and anaerobic ammonia oxidation (anammox) possibly contributed to nitrogen removal of 26–36% in aerobic zone. Quantitative PCR assays presented that the abundance of anammox bacteria under nitritation was more than that under complete nitrification. The largest amount of anammox bacteria was 1.32 × 10~6 copies/g VSS, about 5.6 times increase over a period of 255 days. Nitrite concentration of 17 mg/L in aerobic zone inhibited anammox bacteria. Quantitative results suggested possible occurrence of anammox. Based on performance of nitritation, combining heterotrophic denitrification with autotrophic nitrogen removal is an effective strategy to improve nutrients removal from carbon-limited wastewater.
机译:在不添加外部碳源的情况下,可以从含碳量有限的城市污水中去除90%以上的高养分。实现亚硝化是提高养分去除的先决条件。以亚硝酸盐为电子受体的脱氮除磷是缺氧区的关键途径,该区的氮去除率达到60%以上,平均脱氮磷去除率为88%。同时进行的硝化/反硝化和厌氧氨氧化(厌氧氨氧化)可在需氧区脱氮26-36%。定量PCR分析表明,亚硝化细菌在硝化作用下的丰度要比完全硝化作用下的要高。厌氧菌的最大数量为1.32×10〜6拷贝/ g VSS,在255天的时间内增加了5.6倍。好氧区亚硝酸盐浓度为17 mg / L抑制了厌氧菌。定量结果表明可能发生了厌氧氨氧化。基于硝化性能,将异养脱氮与自养脱氮相结合是提高碳限制废水中养分去除的有效策略。

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