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Phenolic wastewater treatment by an electrocatalytic membrane reactor

机译:电催化膜反应器处理含酚废水

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An electrocatalytic membrane reactor (ECMR) constituted by TiO2 loading carbon membrane named TiO2/carbon electrocatalytic membrane as an anode and a stainless steel mesh as a cathode has been employed to treat phenolic wastewater. A synthetic phenol wastewater as the feed was prepared by mixing phenol and electrolyte (Na2SO4) with the concentration of 15g/L. FESEM, XPS, cyclic voltam-metry (CV) and high-performance liquid chromatography (HPLC) were used to characterize and analyze the electrocatalytic membrane, phenol concentration and degraded intermediates. The results showed that the removal rate of phenol and TOC reached approximately 99.4 and 86.3% after 2 h treatment at 2.0 mM phenolic wastewater by ECMR, respectively. The main intermediate products of phenol degradation included benzoquinone and organic acids. The efficiency and the degraded intermediates could be controlled by the main parameters of ECMR such as residence time, current density, etc. During the ECMR operation under the conditions of 10.0 mM phenolic wastewater, pH of 6, current density of 0.3 mA/cm2 and residence time of 5.2 min, the achieved phenol removal rate and complete mineralization fraction were 99.96 and 72.4%, respectively. The high efficiency and phenol removal obtained are related to the synergistic effect of the electrochemical oxidation and separation in the reactor.
机译:一种电催化膜反应器(ECMR)是由TiO2负载碳膜(称为TiO2 /碳电催化膜)作为阳极,不锈钢网作为阴极构成的,用于处理含酚废水。通过混合浓度为15g / L的苯酚和电解质(Na2SO4)制备合成苯酚废水作为原料。用FESEM,XPS,循环伏安法(CV)和高效液相色谱(HPLC)表征和分析电催化膜,苯酚浓度和降解的中间体。结果表明,ECMR在2.0 mM含酚废水处理2 h后,苯酚和TOC的去除率分别达到约99.4%和86.3%。苯酚降解的主要中间产物包括苯醌和有机酸。可以通过ECMR的主要参数(例如停留时间,电流密度等)来控制效率和降解的中间体。在10.0 mM含酚废水,pH为6,电流密度为0.3 mA / cm2和停留时间为5.2分钟,苯酚去除率和完全矿化率分别为99.96和72.4%。所获得的高效率和苯酚的去除与反应器中电化学氧化和分离的协同作用有关。

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