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首页> 外文期刊>Environmental Science and Pollution Research >Optimizing COD removal from greywater by photoelectro-persulfate process using Box-Behnken design: assessment of effluent quality and electrical energy consumption
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Optimizing COD removal from greywater by photoelectro-persulfate process using Box-Behnken design: assessment of effluent quality and electrical energy consumption

机译:使用Box-Behnken设计通过光电-过硫酸盐工艺优化灰水中的COD去除:废水质量和电能消耗的评估

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Greywater (GW) is a potential source for water reuse in various applications. However, GW treatment is still a vital issue in water reuse in cases of environmental standards and risk to public health. This study investigates optimization and modeling of a hybrid process for COD removal from GW. Persulfate (PS) was simultaneously activated by electrogenerated ferrous ion (EC) and UV to generate sulfate radical. Photoelectro-persulfate (PEPS) was optimized by Box-Behnken design and the effects of four variables (pH, PS dosage, current density, and electrolysis time) were evaluated on COD removal. The results and several coefficients showed that the obtained model was acceptable for predicting the COD removal. Moreover, under optimum conditions (pH = 6.9, PS = 8.8 mM, current density = 2.0 mA/cm(2), and 49.3 min electrolysis time), BOD5, turbidity, TSS, phosphate, and UV254 were effectively removed and COD and BOD5 values reached to discharge standards. Different configurations of the processes were assessed for COD removal. The order of COD removal efficiency followed: PS < Fe(II) < UV/PS aecurrency sign Fe(II)/PS < Fe(II)/PS/UV < electrocoagulation aecurrency sign electrocoagulation/UV < electro-PS < PEPS. The monitoring PS concentration during 60 min reaction time in the aforesaid processes indicated that PEPS could remarkably activate PS. The solution pH was also monitored and related results revealed that the presence of PS during the 10 min first time decreased pH value while production of hydroxide ion at cathode increased pH significantly. Finally, the contribution of electrochemical process in the electrical energy consumption was far less than that of photolysis process in hybrid PEPS process.
机译:灰水(GW)是各种应用中中水回用的潜在来源。但是,在环境标准和对公众健康构成威胁的情况下,GW处理仍然是水回用中的重要问题。这项研究调查了从GW去除COD的混合过程的优化和建模。过硫酸盐(PS)同时被电生成的亚铁离子(EC)和UV活化以生成硫酸根。通过Box-Behnken设计优化了光电过硫酸盐(PEPS),并评估了四个变量(pH,PS用量,电流密度和电解时间)对COD去除的影响。结果和几个系数表明,所获得的模型对于预测COD去除是可以接受的。此外,在最佳条件下(pH = 6.9,PS = 8.8 mM,电流密度= 2.0 mA / cm(2)和49.3分钟的电解时间),可有效去除BOD5,浊度,TSS,磷酸盐和UV254,并去除COD和BOD5达到排放标准的值。对过程的不同配置进行了COD去除评估。 COD去除效率的顺序为:PS

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