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A simultaneous removal of beryllium and ammonium-nitrogen from smelting wastewater in bench- and pilot-scale biological aerated filter

机译:在台式和中试规模的生物曝气滤池中同时从冶炼废水中去除铍和铵氮

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Heavy metal and NH4~+—N co-contaminated wastewater are frequently found, and the presence of NH4~+—N makes it extremely difficult to treat. In the present study, bench-scale and pilot-scale experiments were conducted to investigate the simultaneous removal of beryllium and NH4~+—N from smelting wastewater by biological aerated filter (BAF) reactors. The results of the five-stage BAF reactors showed that the system could endure shock loadings. The average removal efficiency for beryllium and NH4~+—N was 92.6% and 95.0%, respectively. Sequence extraction indicates that the primary removal mechanism in the first two reactors was precipitation, whereas the organic-bound fraction was predominant in the last three reactors due to the high accumulation rates of beryllium inside the microbial cells. Polymerase chain reaction and denaturing gradient gel electrophoresis (PCR-DGGE) and sequence analysis of 16S rDNA gene fragments showed that N-oxidizing bacteria (Nitrosomonas sp. and Beta proteobacterium CH24i) were primarily detected in the first two BAF reactors, in accordance with their high NH4~+—N removal efficiencies, and metal-resistant bacteria (Actinobacteria sp.) were found in all BAF reactors.
机译:经常发现重金属和NH4〜+ -N共同污染的废水,而NH4〜+ -N的存在使其很难处理。在本研究中,进行了台式规模和中试规模的实验,以研究通过生物曝气滤池(BAF)反应器同时去除冶炼废水中的铍和NH4〜+ -N。五级BAF反应堆的结果表明,该系统可以承受冲击载荷。铍和NH4 + -N的平均去除效率分别为92.6%和95.0%。序列提取表明,前两个反应器的主要去除机理是沉淀,而后三个反应器中有机结合的馏分占主导地位,这是由于铍在微生物细胞内的积累速率很高。聚合酶链反应和变性梯度凝胶电泳(PCR-DGGE)以及对16S rDNA基因片段的序列分析表明,根据前者的两个BAF反应器,主要在前两个BAF反应器中检测到N氧化细菌(Nitrosomonas sp。和Beta变形杆菌CH24i)。在所有BAF反应器中均发现了较高的NH4〜+ -N去除效率和耐金属细菌(Actinobacteria sp。)。

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