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COD reduction by TiO2/graphene photocatalytic treatment of ethylene dichloride in wastewater

机译:TiO2 /石墨烯光催化处理废水中的二氯乙烷可减少化学需氧量

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Photocatalytic degradation of ethylene dichloride (EDC) wastewater was investigated in a batch photocatalytic reactor using titanium dioxide (TiO2)/graphene hybrid as the catalyst for the first time. The main advantage of this structure, in which graphene was used as a bed for TiO2, was that it enhanced the electron transfer considerably. The degradation in the organic waste was evaluated in terms of chemical oxygen demand (COD). The concentration of EDC, the amount of the photocatalyst, the concentration of graphene in the catalyst structure, and the pH of the solution were found effective in reaction efficiency. For an initial EDC concentration of 750ppm, the optimum conditions for EDC removal from the wastewater were 2g/l concentration of photocatalyst concentration, 1wt% concentration of graphene in the hybrid structure, and a pH of 4. The experiments were carried out at 5 degrees C. It was found that using this structure, only 4h of treatment was sufficient to obtain a considerable COD reduction. Increasing irradiation intensity from 100 to 200W increased EDC removal from 69.1 to 81.8%.
机译:首次在以二氧化钛(TiO2)/石墨烯杂化物为催化剂的间歇式光催化反应器中研究了二氯化乙烯(EDC)废水的光催化降解。使用石墨烯作为TiO2床的这种结构的主要优点是,它显着提高了电子传输。根据化学需氧量(COD)评估了有机废物中的降解。发现EDC的浓度,光催化剂的量,催化剂结构中石墨烯的浓度以及溶液的pH对反应效率有效。对于初始EDC浓度为750ppm,从废水中去除EDC的最佳条件是光催化剂浓度为2g / l,杂化结构中石墨烯的浓度为1wt%,pH为4。在5度下进行实验C.发现使用这种结构,仅4小时的处理就足以获得显着的COD降低。辐射强度从100W增加到200W,EDC去除率从69.1增加到81.8%。

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