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Study of municipal wastewater treatment with oyster shell as biological aerated filter medium

机译:牡蛎壳曝气生物滤池处理城市污水的研究

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Oyster shell and plastic ball were applied as the media of biological aerated filters (BAF) to treat municipal wastewater in two lab scale upflow BAFs. The results indicated that oyster shell BAF and plastic ball BAF had average chemical oxygen demand (COD) removals of 85.1% and 80.0%, when hydraulic retention time (HRT) was longer than 4 h, and 65.7% and 68% with HRT of 2 h, respectively. In terms of removing ammonia nitrogen (NH3-N), oyster shell BAF and plastic ball BAF had average removals of 98.1% and 93.7% for HRT longer than 4 h, and 47.2% and 65.1% for HRT of 2 h, respectively. Total phosphorus (TP) removals of oyster shell BAF were increased to 79.9% and 90.6% as the pH increased to 9 and 10, respectively, while no improvement was observed for plastic ball BAF. The effluent pH of oyster shell BAF was higher and buffered compared with that of the influent, mainly due to the CaCO3 released from the shell. The oyster shell may also be the main reason to support the BAF a higher NH3-N removal efficiency when HRT was longer than 4 h, compared with plastic ball BAF.
机译:牡蛎壳和塑料球被用作生物曝气滤池(BAF)的介质,以两个实验室规模的上流BAF处理市政废水。结果表明,当水力停留时间(HRT)超过4 h时,牡蛎壳BAF和塑料球BAF的平均化学需氧量(COD)去除率为85.1%和80.0%,当HRT为2时,其平均化学需氧量去除率为65.7%和68% h,分别。就去除氨氮(NH3-N)而言,牡蛎壳BAF和塑料球BAF的HRT持续时间超过4 h的平均去除率分别为98.1%和93.7%,以及2 h的HRT的平均去除率分别为47.2%和65.1%。随着pH值分别增加到9和10,牡蛎壳BAF的总磷去除量分别增加到79.9%和90.6%,而塑料球BAF则没有改善。与进水相比,牡蛎壳BAF的出水pH值更高且具有缓冲性,这主要是由于从壳中释放出的CaCO3所致。与塑料球BAF相比,当HRT超过4 h时,牡蛎壳可能也是支持BAF更高的NH3-N去除效率的主要原因。

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