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Enhanced electrochemical treatment of phenolic pollutants by an effective adsorption and release process

机译:通过有效的吸附和释放过程增强对酚类污染物的电化学处理

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摘要

Phenolic compounds are the most prevalent pollutants in industrial wastewater. Here we report on a novel approach: using adsorption and release process to improve the efficiency of electrochemical oxidation of phenolic pollutants. To illustrate this innovative technique, three phenolic compounds, phenol, p-nitrophenol (p-NPh) and p-cresol, were selected as model pollutants. The adsorption studies were carried out by adsorbing the three pollutants onto a hyper-cross-linked resin (Purolite Macronet MN-200). The adsorption isotherms, adsorption kinetics and the effect of temperature on adsorption were systematically investigated. Our experimental results have shown that the MN-200 resin exhibits a high removal efficiency of the three model pollutants and the adsorbed phenolic compounds can be efficiently released in a NaOH solution. The preconcentrated phenolic compounds were further treated using electrochemical oxidation at the Ti/SnO_2-Sb_2O_5-IrO_2 electrode. The first-order model fits the kinetics data of the electrochemical oxidation very well, showing that the degradation rate constant decreases in the order of p-NPh > phenol > p-cresol. Our study has demonstrated that the integration of the effective preconcentration process and the advanced electrochemical oxidation offers a promising approach for the efficient elimination of phenolic pollutants in wastewater.
机译:酚类化合物是工业废水中最普遍的污染物。在这里,我们报告一种新方法:使用吸附和释放过程来提高酚类污染物的电化学氧化效率。为了说明这一创新技术,选择了三种酚类化合物,即苯酚,对硝基苯酚(p-NPh)和对甲酚作为模型污染物。通过将三种污染物吸附到超交联树脂(Purolite Macronet MN-200)上进行吸附研究。系统地研究了吸附等温线,吸附动力学和温度对吸附的影响。我们的实验结果表明,MN-200树脂对三种模型污染物具有很高的去除效率,并且所吸附的酚类化合物可以在NaOH溶液中有效释放。将预浓缩的酚类化合物在Ti / SnO_2-Sb_2O_5-IrO_2电极上进行电化学氧化处理。一级模型很好地拟合了电化学氧化的动力学数据,表明降解速率常数按对-NPh>苯酚>对-甲酚的顺序降低。我们的研究表明,有效的预浓缩工艺与先进的电化学氧化相结合,为有效消除废水中的酚类污染物提供了一种有前途的方法。

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