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Influence of dissolved organic matter in natural and simulated water on the photochemical decomposition of butylparaben

机译:天然和模拟水中溶解的有机物对对羟基苯甲酸丁酯的光化学分解的影响

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Background In the last few decades the quality of natural water has often deteriorated as a variety of novel pollutants have contaminated rivers and lakes. Trace amounts of some man-made chemicals can be hazardous to plants, animals as well as human health as carcinogens, mutagens or endocrine disruptors. Light radiation may help in its decomposition, aided by naturally occurring colored organic compounds (humic substances) in the water. The aim of these studies was to check the influence of presence of organic and inorganic matter on the removal of endocrine disrupting compound - butylparaben (BP) from water. Methods Photochemical decomposition of BP in aqueous solution using: photolysis by ultraviolet-C (UVC) and visible (VIS) irradiation, advanced oxidation in H2O2/UV system and photosensitized oxidation was examined. The degradation processes were carried out in different type of water matrix: natural water from Sulejow Reservoir, simulated natural water with humic acids and buffered solution. Results The presence of dissolved organic matter in water did not influence much on UVC photolysis and increases only about 8% of BP depletion rate in H2O2/UV system. While during visible light photolysis and photosensitized oxidation the addition of natural water matrix causes the acceleration of reaction rate by 16% and 36%, respectively. Moreover BP degradation proceeds via singlet oxygen generated from humic substances. Conclusions Butylparaben undergoes both direct and indirect photodegradation in aqueous solution under UVC and visible radiation. The efficiency of the H2O2/UV process, photolysis as well as photosensitized oxidation processes is strongly dependent on composition of the water.
机译:背景技术在过去的几十年中,由于各种新型污染物污染了河流和湖泊,天然水的质量经常恶化。微量的某些人造化学物质可能会致癌物,诱变剂或内分泌干扰物,对植物,动物以及人类健康造成危害。水中的天然存在的有色有机化合物(腐殖质)有助于光辐射的分解。这些研究的目的是检查有机和无机物质的存在对从水中去除内分泌干扰化合物对羟基苯甲酸丁酯(BP)的影响。方法采用紫外-C(UVC)和可见光(VIS)辐照光解,H2O2 / UV体系中的高级氧化和光敏氧化对水溶液中的BP进行光化学分解。降解过程是在不同类型的水基质中进行的:来自Sulejow水库的天然水,含有腐殖酸和缓冲溶液的模拟天然水。结果水中溶解有机物的存在对UVC的光解影响不大,在H2O2 / UV系统中仅增加了8%的BP消耗率。在可见光光解和光敏氧化过程中,加入天然水基质分别使反应速率加快了16%和36%。此外,BP降解是通过腐殖质产生的单线态氧进行的。结论对羟基苯甲酸丁酯在UVC和可见光照射下在水溶液中会同时发生直接和间接的光降解。 H 2 O 2 / UV工艺,光解以及光敏氧化工艺的效率在很大程度上取决于水的成分。

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