首页> 外文期刊>The Science of the Total Environment >Rapid degradation of clozapine by heterogeneous photocatalysis. Comparison with direct photolysis, kinetics, identification of transformation products and scavenger study
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Rapid degradation of clozapine by heterogeneous photocatalysis. Comparison with direct photolysis, kinetics, identification of transformation products and scavenger study

机译:通过异质光催化快速降解氯氮平。与直接光解,动力学,转化产品鉴定的比较和清除剂研究

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In this study TiO2-mediated photocatalytic degradation of the persistent drug clozapine under the simulated solar radiation was studied for the first time. The experiments were conducted both in the ultrapure and river water, which enabled the assessment of the organic matrix impact. The direct and indirect photolysis experiments were conducted for a comparison. Influence of the catalyst loading on the efficiency of the process was also assessed, and the highest catalyst loading (300 mg L-1) was found to be the most effective. The TiO2 photocatalysis was extremely effective for clozapine degradation - the decomposition was almost 300 times faster in comparison to the direct photolysis (t(1/2) = 1.7 min, neither clozapine, nor the intermediates were detected after 20 min of irradiation), and presence of the organic matrix did not negatively affect the process. Nevertheless the photocatalytic process turned out to be highly sensitive to act of the ROS scavengers. Thirteen transformation products (TPs) were found and their structures were elucidated by the means of high resolution mass spectrometry. Properties - toxicity, biodegradability, BCF and BAF - of TPs and the parent molecule were estimated with the use of computational methods. Identified TPs were found as generally less toxic and more biodegradable than clozapine. (c) 2019 Elsevier B.V. All rights reserved.
机译:在本研究首次研究了在模拟的太阳辐射下的持续药物氯氮平的TiO2介导的光催化降解。实验在超纯水和河水中进行,这使得能够评估有机基质的影响。进行直接和间接的光解实验进行比较。还评估了催化剂负载对工艺效率的影响,发现最高的催化剂负载(300mg L-1)是最有效的。 TiO2光催化对于氯氮平降解非常有效 - 与直接光解(T(1/2)= 1.7分钟相比,分解几乎快300倍,既不在辐射20分钟后检测到中间体也没有检测到中间体),有机基质的存在对该过程产生负面影响。然而,光催化过程对ROS清除剂的行为非常敏感。发现了13种转化产物(TPS),并通过高分辨率质谱法阐明其结构。利用计算方法估计了性能 - 毒性,生物降解性,BCF和BAF和母体分子的BAF。发现鉴定的TPS通常比氯氮平更低的毒性和更生物降解。 (c)2019 Elsevier B.v.保留所有权利。

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