首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Response surface methodology for optimization of simultaneous COD, NH4~+-N and Mn~(2+) removal from drinking water by biological aerated filter
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Response surface methodology for optimization of simultaneous COD, NH4~+-N and Mn~(2+) removal from drinking water by biological aerated filter

机译:响应面法优化曝气生物滤池同时去除饮用水中的COD,NH4〜+ -N和Mn〜(2+)

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摘要

This study investigated the effectiveness of a biological aerated filter (BAF) as an additional treatment in drinking water treatment plant systems for simultaneous chemical oxygen demand (COD), ammonium (NH4~+-N) and manganese (Mn~(2+)) removal. The experimental design was face centered-central composite design (FC-CCD) with three operational variables: COD load, aeration rate (AR) and hydraulic retention time (HRT). Optimum conditions for maximum COD, NH4~+-N and Mn~(2+) removal were determined through response surface methodology, where COD load was set as the maximum while aeration rate and hydraulic retention time were minimized. The optimum conditions were found to be COD load of 0.90 kg/m~3, AR of 0.30 L/min and HRT of 7.47 h with predicted simultaneous COD, NH4~+-N and Mn~(2+) removal as 95.5%, 93.9% and 94.8%, respectively. These optimum conditions were used to estimate investment and operating cost of BAF system for a treatment capacity of 100,000 m~3/day. The total capital and operating costs were estimated to be US$ 8,110,600 and US$ 0.022 per m~3, respectively.
机译:这项研究调查了曝气生物滤池(BAF)作为饮用水处理厂系统中同时化学需氧量(COD),铵(NH4〜+ -N)和锰(Mn〜(2+))的附加处理方法的有效性。去除。实验设计是具有三个操作变量的面心中央复合设计(FC-CCD):COD负载,曝气速率(AR)和水力停留时间(HRT)。通过响应面法确定了最大COD,NH4〜+ -N和Mn〜(2+)去除的最佳条件,其中将COD负载设为最大,同时将通气率和水力停留时间最小化。发现最佳条件是:COD负载量为0.90 kg / m〜3,AR为0.30 L / min,HRT为7.47 h,预计同时去除COD,NH4〜+ -N和Mn〜(2+)为95.5%,分别为93.9%和94.8%。这些最佳条件用于估算处理能力为100,000 m〜3 / day的BAF系统的投资和运营成本。每m〜3的总资本成本和运营成本估计分别为8,110,600美元和0.022美元。

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