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Oxidation of organic pollutants in aqueous solutions by nanosized copper oxide catalysts

机译:纳米氧化铜催化剂氧化水溶液中的有机污染物

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摘要

The catalytic activity of copper oxide nanoparticles was investigated for the removal of organic pollutants in aqueous solutions, using hydrogen peroxide as an oxidant. Complete degradation of both alachlor and phenanthrene was achieved after 20 min. The kinetics of the reaction was found to be pseudo-first-order with respect to the pollutant. The influence on the reaction kinetics of different catalyst samples, consisting of the same material but of different origin and different particle properties, was examined. The effects of several factors such as irradiation, oxidant concentration, ionic strength and pH on the reaction were also investigated. The catalysis is not photo-induced and can be performed without UV-vis irradiation. In particular, an optimal oxidant concentration was determined for the studied system. The presence of salts was found to inhibit the alachlor degradation rate. The addition of high concentrations of oxidant or salt results in pseudo-zero-order kinetics. However, NaCl at very high concentrations (>1 M) was found to cause a dramatic increase in reaction rate. The catalysis is efficient over a wide range of pH values.
机译:使用过氧化氢作为氧化剂,研究了氧化铜纳米颗粒的催化活性以去除水溶液中的有机污染物。 20分钟后,甲草胺和菲完全降解。发现该反应的动力学对于污染物是伪一级的。研究了不同催化剂样品对反应动力学的影响,这些样品由相同的材料组成,但来源不同,颗粒性质也不同。还研究了辐射,氧化剂浓度,离子强度和pH等几个因素对反应的影响。该催化不是光诱导的,并且可以在没有紫外线可见光照射的情况下进行。特别是,确定了所研究系统的最佳氧化剂浓度。发现盐的存在抑制了甲草胺的降解速率。添加高浓度的氧化剂或盐会导致伪零级动力学。但是,发现浓度很高(> 1 M)的氯化钠会引起反应速率的急剧增加。在很宽的pH值范围内,催化作用都是有效的。

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