首页> 外文期刊>Chemical engineering journal >Photocatalytic degradation of four non-steroidal anti-inflammatory drugs in water under visible light by P25-TiO2/tetraethyl orthosilicate film and determination via ultra performance liquid chromatography electrospray tandem mass spectrometry
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Photocatalytic degradation of four non-steroidal anti-inflammatory drugs in water under visible light by P25-TiO2/tetraethyl orthosilicate film and determination via ultra performance liquid chromatography electrospray tandem mass spectrometry

机译:P25-TiO2 /原硅酸四乙酯薄膜在可见光下光催化降解水中的四种非甾体类抗炎药及超高效液相色谱电喷雾串联质谱法测定

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摘要

Photocatalytic degradation of four non-steroidal anti-inflammatory drugs (NSAIDs) - salicylic acid, ibuprofen, naproxen and diclofenac in water has been investigated using a novel P25-TiO2/tetraethyl orthosilicate (TEOS) film on glazed ceramic surface under a visible light incubator. Influences of main parameters, such as adsorption, stir, initial pH, amount of P25-TiO2/TEOS and irradiation time has been studied. Results show that the degradations of four NSAIDs obtained maximum and equilibrium effect within 10 h of irradiation at pH 6.0 condition. The maximum degradation effects of salicylic acid, ibuprofen, naproxen and diclofenac under optimum conditions are 76%, 85%, 94% and 65%, respectively. The photocatalytic degradation reactions follow first order kinetics. Naproxen is selected as the representative to analyze the photocatalytic products, and a probable photocatalytic degradation pathway of naproxen is put forward. To support the degradation kinetics study a rapid, sensitive and accurate ultra performance liquid chromatography tandem mass spectrometry (UPLC-MS/MS) method has been developed. (C) 2014 Elsevier B.V. All rights reserved.
机译:使用新型P25-TiO2 /原硅酸四乙酯(TEOS)膜在可见光孵化器下在釉面陶瓷表面上研究了水中的四种非甾体抗炎药(NSAID)-水杨酸,布洛芬,萘普生和双氯芬酸的光催化降解。研究了吸附,搅拌,初始pH,P25-TiO2 / TEOS量和辐照时间等主要参数的影响。结果表明,在pH 6.0的条件下,辐照10 h内,四种NSAIDs的降解获得了最大的平衡效果。在最佳条件下,水杨酸,布洛芬,萘普生和双氯芬酸的最大降解作用分别为76%,85%,94%和65%。光催化降解反应遵循一级动力学。以萘普生为代表对光催化产物进行分析,提出了萘普生可能的光催化降解途径。为了支持降解动力学的研究,已经开发了一种快速,灵敏和准确的超高效液相色谱串联质谱法(UPLC-MS / MS)。 (C)2014 Elsevier B.V.保留所有权利。

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