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Conductive diamond electrochemical oxidation of caffeine-intensified biologically treated urban wastewater

机译:咖啡因强化生物处理城市废水的导电金刚石电化学氧化

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In this work, the usefulness of Conductive Diamond Electrochemical Oxidation (CDEO) to degrade caffeine in real urban wastewater matrixes was assessed. The oxidation of actual wastewater intensified with caffeine (from 1 to 100 mg L-1) was studied, paying particular attention to the influence of the initial load of caffeine and the differences observed during the treatment of caffeine in synthetic wastewater. The results showed that CDEO is a technology that is capable of efficiently degrading this compound even at very low concentrations and that it can even be completely depleted. Profiles of the ionic species of S (SO42-), N (NH4+, NO3-) and Cl (ClO-, ClO3- and ClO4-) were monitored and explained for plausible oxidation mechanisms. It was observed that the efficiency achieved is higher in the treatment of real wastewater than in the oxidation of synthetic wastewater because of the contribution of electrogenerated oxidant species such as hypochlorite. The formation of chlorate and perchlorate during electrochemical processes was observed, and a combined strategy to prevent this important drawback was successfully tested based on the application of low current densities with the simultaneous dosing of hydrogen peroxide. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在这项工作中,评估了导电金刚石电化学氧化(CDEO)降解实际城市废水基质中咖啡因的有用性。研究了咖啡因(从1到100 mg L-1)增强的实际废水的氧化,特别注意咖啡因的初始负荷的影响以及合成废水中咖啡因处理过程中观察到的差异。结果表明,CDEO是一种即使在非常低的浓度下也能够有效降解该化合物的技术,甚至可以将其完全消耗掉。监测并解释了S(SO42-),N(NH4 +,NO3-)和Cl(ClO-,ClO3-和ClO4-)的离子种类的可能的氧化机理。据观察,由于电产生的氧化剂物质如次氯酸盐的贡献,在实际废水的处理中获得的效率比在合成废水的氧化中更高。在电化学过程中观察到了氯酸盐和高氯酸盐的形成,并且基于同时施加低电流密度和过氧化氢的剂量,成功地测试了防止该重要缺点的组合策略。 (C)2015 Elsevier Ltd.保留所有权利。

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