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Combined electrocoagulation and electro-oxidation of industrial textile wastewater treatment in a continuous multi-stage reactor

机译:连续多阶段反应堆中工业纺织废水处理的组合电凝和电氧化

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A combined electrocoagulation (EC) and electrochemical oxidation (EO) industrial textile wastewater treatment potential is evaluated in this work. A fractional factorial design of experiment showed that EC current density, followed by pH, were the most significant factors. Conductivity and number of electrooxidation cells did not affect chemical oxygen demand degradation (DCOD). Aluminum and iron anodes performed similarly as sacrificial anodes. Current density, pH and conductivity were chosen for a Box-Behnken design of experiment to determine optimal conditions to achieve a high DCOD minimizing operating cost (OC). The optimum to achieve a 70% DCOD with an OC of USD 1.47/m(3) was: pH of 4, a conductivity of 3.7 mS/cm and a current density of 4.1 mA/cm(2). This study also shows the applicability of a combined EC/EO treatment process of a real complex industrial wastewater.
机译:在这项工作中,评估了电凝(EC)和电化学氧化(EO)工业纺织废水处理潜力。 实验的小数因子设计表明EC电流密度,其次是pH,是最重要的因素。 电导率和电氧化细胞的数量不影响化学氧需求降解(DCOD)。 铝和铁阳极与牺牲阳极相似。 选择电流密度,pH和电导率,用于实验的Box-Behnken设计,以确定最佳条件,以实现高DCOD最小化运营成本(OC)。 最佳实现70%DCOD的OC为1.47 / m(3)是:pH为4,电导率为3.7ms / cm,电流密度为4.1 mA / cm(2)。 本研究还表明了真正复杂的工业废水的组合EC / EO处理过程的适用性。

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