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百草枯的降解动力学和机制:UV-C 光解与 TiO/SiC 泡沫的 UV-C 光催化。

Kinetics and mechanism of Paraquat's degradation: UV-C photolysis vs UV-C photocatalysis with TiO/SiC foams.

机构信息

Institut national de la recherche scientifique (INRS - Eau, Terre et Environnement), Université du Québec, 490 rue de la Couronne, Québec city, G1K 9A9, QC, Canada; Institut de Chimie et Procédés pour l'Energie, l'Environnement et la Santé (ICPEES), CNRS-UMR7515-University of Strasbourg, Saint-Avold Antenna, Université de Lorraine, 12 rue Victor Demange, 57500, Saint-Avold, France.

Institut national de la recherche scientifique (INRS - Eau, Terre et Environnement), Université du Québec, 490 rue de la Couronne, Québec city, G1K 9A9, QC, Canada.

出版信息

J Hazard Mater. 2019 May 15;370:164-171. doi: 10.1016/j.jhazmat.2018.06.009. Epub 2018 Jun 4.

Abstract

In this study, the photolytic and photocatalytic removal of the herbicide paraquat is investigated under UV-C (254 nm). For photocatalytic experiments, SiC foams were used with P25-TiO nanoparticles deposited by dip-coating. The foams were characterized by scanning electron microscopy and paraquat's degradation under UV-C photolysis or photocatalysis, followed by UV-vis spectroscopy, total organic carbon analyzer, LC-MS and ion chromatography. After 3 h of reactions by photolysis and photocatalysis, 4% and 91% of TOC removal were observed. An analysis of degradation by-products showed a similar degradation pathway with pyridinium ions observed by LC/MS and carboxylic acids (succinate, acetate, oxalate and formate) detected by ion chromatography. In conclusion, these two different photo-degradation processes are able to remove paraquat and produce similar by-products. However, the kinetics of degradation is rather slow during photolysis and it is recommended to combine the UV-C lightning with a TiO photocatalyst to improve the mineralization rate.

摘要

在这项研究中,研究了在 UV-C(254nm)下光解和光催化去除除草剂百草枯。对于光催化实验,使用了 SiC 泡沫,通过浸涂法沉积了 P25-TiO 纳米颗粒。通过扫描电子显微镜对泡沫进行了表征,并进行了 UV-C 光解或光催化下的百草枯降解实验,随后进行了 UV-vis 光谱、总有机碳分析仪、LC-MS 和离子色谱分析。在光解和光催化反应 3 小时后,观察到 TOC 去除率分别为 4%和 91%。通过 LC/MS 观察到吡啶离子和离子色谱检测到的羧酸(琥珀酸、乙酸、草酸和甲酸)的降解产物分析表明,存在相似的降解途径。总之,这两种不同的光降解过程能够去除百草枯并产生相似的副产物。然而,光解过程的降解动力学相当缓慢,建议将 UV-C 闪电与 TiO 光催化剂结合使用,以提高矿化率。

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