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Degradation of metformin in water by TiO_2-ZrO_2 photocatalysis

机译:TiO_2-ZrO_2光催化降解水中的二甲双胍

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The increasing use of pharmaceutical products also increases their release in aquatic environment. These contaminants are considered emerging pollutants, and induce adverse ecological and human health effects. The antidiabetic metformin is one example that has been detected in the aquatic environment at unusual concentrations. This fact indicates that conventional wastewater treatment is inefficient on eliminating this compound. Here we show that metformin can be effectively removed from water by photocatalysis. We found the optimised conditions for pH and concentration of catalyst on the photocatalytic process. TiO_2 and TiO_2-ZrO_2 were successful in oxidising metformin under UV radiation following a pseudo-first order kinetics. Intermediates of metformin photodegradation appeared after photocatalytic treatment. Toxicity analysis showed that the degradation products are non-toxic to Lactuca sativa seeds.
机译:药品使用的增加也增加了它们在水生环境中的释放。这些污染物被认为是新兴污染物,会给生态和人类健康带来不利影响。抗糖尿病二甲双胍是在水生环境中以异常浓度检测到的一个实例。该事实表明常规废水处理不能有效地消除这种化合物。在这里,我们表明二甲双胍可以通过光催化有效地从水中去除。我们发现了光催化过程中pH和催化剂浓度的最佳条件。 TiO_2和TiO_2-ZrO_2遵循拟一级反应动力学成功地在紫外线辐射下氧化二甲双胍。光催化处理后出现二甲双胍光降解中间体。毒性分析表明,降解产物对紫花苜蓿种子无毒。

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