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A NOVEL APPROACH TO REMOVE NITROGEN IN A BIOLOGICAL AEROBIC FILTER (BAF)

机译:去除生物需氧滤池(BAF)中氮的新方法

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Laboratory study on nitrogen removal was carried out using biological aerobic filter (BAF) fed with synthetic domestic wastewater in the temperature range of 20.5-26.5℃ in order to gain insight into the mechanism and the influences of operation parameters on nitrite accumulation in the biological nitrogen removal process. Influent loading with 0.26-0.62 kg (m~3 d~(-1)) NH_4~+-N, 0.28-0.63 kg (m~3 d~(-1)) TN, 1-2 m h~(-1) hydraulic loading and air/water ratio 3:1, resulted in the removal of NH_4~+-N and TN by 0.15-0.52 kg (m~3d~(-1)) and 0.18-0.42 kg (m~3 d~(-1)) respectively. Hence BAF seems to be a promising nitrogen removal technique. The investigation of nitrite concentrations in the bulk and effluent, the profiles of inorganic nitrogen compounds and the spatial distribution of microbial populations and activity indicated that the nitrite accumulation and shortcut nitrification-denitrification had taken place in the bioreactor. No clear relationships were observed between the nitrite accumulation with the influent loading, temperature and pH value except that nitrite concentrations in the bulk increased with high back washing frequency. The results suggested that the filter structure and operation pattern were the principal factors that cause the nitrite accumulation and shortcut nitrification-denitrification occurring in the biological aerobic filter.
机译:为了研究生物氮中亚硝酸盐积累的机理及其对生物氮中亚硝酸盐积累的影响,使用了生物需氧滤池(BAF)并在20.5-26.5℃的温度范围内对合成生活污水进行了脱氮实验。删除过程。进水量为0.26-0.62 kg(m〜3 d〜(-1))NH_4〜+ -N,0.28-0.63 kg(m〜3 d〜(-1))TN,1-2 mh〜(-1)水力负荷和空/水比3:1,分别去除NH_4〜+ -N和TN 0.15-0.52 kg(m〜3d〜(-1))和0.18-0.42 kg(m〜3 d〜( -1))。因此,BAF似乎是一种很有前途的脱氮技术。对散装和污水中亚硝酸盐的浓度,无机氮化合物的分布以及微生物种群和活性的空间分布的研究表明,生物反应器中发生了亚硝酸盐积累和短时硝化-反硝化作用。在亚硝酸盐积累与进水量,温度和pH值之间没有观察到明确的关系,只是大量亚硝酸盐的浓度随反洗频率的增加而增加。结果表明,滤池的结构和运行方式是造成生物好氧滤池中亚硝酸盐积累和短程硝化-反硝化的主要因素。

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