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水中百菌清的类黄酮敏化光解。

Flavonoid-sensitized photolysis of chlorothalonil in water.

机构信息

Key Laboratory of Agri-food Safety of Anhui Province, School of Resource & Environment, Anhui Agricultural University, Hefei, Anhui, China.

Department of Molecular Biosciences and Bioengineering, University of Hawaii at Manoa, Honolulu, HI, USA.

出版信息

Pest Manag Sci. 2020 Sep;76(9):2972-2977. doi: 10.1002/ps.5842. Epub 2020 Apr 21.

Abstract

BACKGROUND

Chlorothalonil is a conventional chloroaromatic fungicide and is toxic to many aquatic species. This study was designed to investigate the effects of six flavonoids on the photolysis of chlorothalonil under sunlight and artificial light.

RESULTS

Flavonoids sensitized the photolysis of chlorothalonil under sunlight and artificial light by 6.7-18.3 and 2.4-7.5 times, respectively, in comparison with a flavonoid-free control. Photosensitization effect of each of the six flavonoids was greater under sunlight irradiation than under high-pressure mercury lamp irradiation. Cyanidin showed greater photosensitization effects than luteolin, galangin, quercetin, morin and kaempferol. Chlorothalonil underwent photo-reductive dechlorination and no hydrolysis product was formed in the presence of flavonoids. Hydroxyl and hydrogen radicals were detected in the absence and presence of cyanidin, respectively, under light irradiation.

CONCLUSION

The photosensitization effect of flavonoids on chlorothalonil photolysis is apparently related to flavonoid structure and might be due to their hydrogen donation capacity. These results highlight benefit of using flavonoids to manage aquatic pollution and reduce aquatic toxicity, and have great relevance in predicting the degradation kinetics and biological impacts of chlorothalonil in surface water. © 2020 Society of Chemical Industry.

摘要

背景

百菌清是一种常规的含氯芳烃杀菌剂,对许多水生生物都具有毒性。本研究旨在研究六种类黄酮对阳光和人工光照下百菌清光解的影响。

结果

与不含类黄酮的对照相比,类黄酮分别使阳光和人工光照下百菌清的光解增强了 6.7-18.3 和 2.4-7.5 倍。在阳光照射下,六种类黄酮中的每一种的光敏化效果都大于在高压汞灯照射下的效果。与木樨草素、芹菜素、根皮素、桑色素和山奈酚相比,矢车菊素表现出更大的光敏化效果。在类黄酮存在下,百菌清发生光还原脱氯,且没有形成水解产物。在光照下,分别检测到了氰花定存在和不存在时的羟基和氢自由基。

结论

类黄酮对百菌清光解的光敏化作用显然与类黄酮结构有关,可能是由于其供氢能力。这些结果突出了利用类黄酮来管理水生污染和降低水生毒性的益处,并在预测百菌清在地表水的降解动力学和生物影响方面具有重要意义。 © 2020 英国化学学会。

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