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Treatment of landfill leachate RO concentration by Iron–carbon micro–electrolysis (ICME) coupled with H2O2 with emphasis on convex optimization method

机译:铁碳微电解(ICME)结合过氧化氢处理垃圾渗滤液RO浓度的研究,凸优化法为重点

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A combined technology between Iron-carbon micro-electrolysis (ICME) and H_(2)O_(2) using scrap iron and granular active carbon was extensively investigated and optimized (three main independent parameters?chosen) for chemical oxygen demand (COD) removal of landfill leachate reverse osmosis (RO) concentration by batch experiments. A regression quadratic equation was developed to model the outcome?using central composite design (CCD) coupled with response surface methodology. A global optimization method–the convex optimization was applied to determine the optimal parameters. Under optimal parameters determined as C/Fe (Surface area) of 717143.8, H_(2)O_(2) concentration of 1687.6 mg/L and pH of 3.8, the corresponding COD removal efficiency was up to 86.9%. Consequently, the COD in the effluent was less than 300 mg/L. The treated water can meet the level B standards of Wastewater Quality Standards for Discharge to Municipal Sewers (CJ 343—2010).
机译:广泛研究了铁碳微电解(ICME)和H_(2)O_(2)结合使用废铁和颗粒状活性炭的组合技术,并优化了(选择了三个主要独立参数)以去除化学需氧量(COD)分批实验分析垃圾填埋场渗滤液反渗透(RO)的浓度。通过使用中央复合设计(CCD)和响应面方法,开发了一个二次方程回归模型来模拟结果。全局优化方法-凸优化用于确定最佳参数。在C / Fe(表面积)为717143.8,H_(2)O_(2)浓度为1687.6 mg / L,pH为3.8的最佳参数下,相应的COD去除效率高达86.9%。因此,废水中的COD低于300 mg / L。处理后的水可以达到《城市污水排放质量标准》(CJ 343—2010)的B级标准。

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