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Removal of organics and nitrogen in sewage treatment using anoxic-aerobic recirculated filter

机译:使用缺氧-好氧循环过滤器去除污水处理中的有机物和氮

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The anoxic-aerobic recirculated filter (AARF) process was investigated, on removal efficiencies of organics and nitrogen with regard to loading rates, recirculation ratios of nitrified liquor and contribution of methane production and sulfate reduction in the treatment of the municipal sewage. The AARF process is composed of An anoxic filter for denitrification and an aerobic filter for nitrification and some of the nitrified liquor in the aerobic filter is recirculated to the anoxic filter. The AARF process successfully removed organics and nitrogen achieving high removal rates of 88% for COD and 64-74% for nitrogen. The recirculation ratio (Re) did not affect the COD removal efficiency but did affect the nitrogen removal, which was enhanced at a higher ratio (Re = 4). The methane production was not contributive to the COD removal but the COD consumed by the sulfate reduction was equivalent to 17% of total COD removed at Re = 2. We confirmed that the AARF process was applicable to the sewage treatment including nitrogen removal at a hydraulic retention time close to that of the conventional activated sludge process. [References: 4]
机译:研究了缺氧-好氧循环过滤器(AARF)工艺,研究了有机物和氮的去除效率,包括负载率,硝化液的再循环率以及甲烷的产生和硫酸盐的减少对市政污水处理的影响。 AARF工艺由用于脱氮的缺氧滤池和用于硝化的好氧滤池组成,好氧滤池中的部分硝化液再循环到缺氧滤池中。 AARF工艺成功去除了有机物和氮,对COD的去除率高达88%,对氮的去除率达到64-74%。再循环比(Re)不会影响COD的去除效率,但会影响氮的去除,氮的去除率更高(Re = 4)。甲烷的产生对COD的去除没有贡献,但是硫酸盐还原所消耗的COD等于Re = 2时去除的COD的17%。我们证实了AARF工艺适用于污水处理,包括在水力条件下去除氮保留时间接近常规活性污泥法。 [参考:4]

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