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首页> 外文期刊>The Science of the Total Environment >Photolysis and photocatalysis of the non-steroidal anti-inflammatory drug Nimesulide under simulated solar irradiation: Kinetic studies, transformation products and toxicity assessment
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Photolysis and photocatalysis of the non-steroidal anti-inflammatory drug Nimesulide under simulated solar irradiation: Kinetic studies, transformation products and toxicity assessment

机译:模拟太阳辐照下的非甾体抗炎药的光解和光催化:动力学研究,转化产物和毒性评估

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In this study, the degradation of Nimesulide (NIM), a non -steroidal anti-inflammatory drug, using photolysis, heterogeneous (TiO2 in dispersion) and homogeneous (photo -Fenton reactant) photocatalysis, under simulated solar light (SSL) radiation, was investigated. Various parameters affecting the degradation rate of the target compound during the applied processes were optimized. The efficiency of all treatments used (direct photolysis; TiO2/SSL; Ti02/H202/SSL; Ti021.520?3 /SSL; Fe3'/H202/SSL; Fe31 /5204 /SSL and [Fe(C20i)313 1-1202/SSL) was evaluated by means of initial reaction rate and mineralization. Moreover, the generated transformation products (TPs) by each basic process (photolysis; TiO2/SSL and Fe3'/H202/SSL) were identified, using liquid chromatography coupled to high resolution mass spectrometry, and their formation kinetic profiles were given. The main transformation routes of NIM were hydroxylation and fragmentation, for all three treatments applied. Finally, toxicity measurements were conducted using Microtox bioassay in order to evaluate the potential risk of NIM and its TPs to aqueous organisms. Although, the acute toxicity increased during the first stages of treatment the final outcome lead to very low toxicity levels even within 60 min of TiO2/SSL treatment. Concluding, the obtained results suggest that the photocatalytic degradation of NIM can lead to its complete elimination and simultaneously to the detoxification of the solution. (C) 2019 Elsevier B.V. All rights reserved.
机译:在该研究中,使用光解,使用光解,非均相(TiO 2在分散体)和均相(Photo-Fenton反应物)光催化的下降,在模拟的太阳灯(SSL)辐射下,降解尼菊(Nim)的降解是调查。优化了影响靶化合物在所施加的过程中的降解速率的各种参数进行了优化。使用的所有处理的效率(直接光解; TiO2 / SSL; Ti02 / H202 / SSL; Ti021.520?3 / SSL; FE3'/ H202 / SSL; FE31 / 5204 / SSL和[FE(C20I)313 1-1202通过初始反应速率和矿化评估/ SSL)。此外,通过液相色谱法鉴定通过液相色谱法鉴定生成的变换产物(TPS)(光解; TiO 2 / SSL和Fe3' / H202 / SSL),并给出了它们的形成动力学谱。对于所有三种治疗方法,NIM的主要转化途径是羟基化和碎裂。最后,使用Microtox生物测定进行毒性测量,以评估NIM的潜在风险及其TPS至含水生物。虽然,急性毒性在治疗的第一个阶段增加了最终结果,甚至在TiO 2 / SSL处理的60分钟内均导致极低的毒性水平。结论,所获得的结果表明,尼姆的光催化降解可导致其完全消除并同时对溶液的排毒。 (c)2019 Elsevier B.v.保留所有权利。

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