首页> 外文期刊>Journal of mass spectrometry: JMS >Structural elucidation and estimation of the acute toxicity of the major UV-visible photoproduct of fludioxonil - detection in both skin and flesh samples of grape
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Structural elucidation and estimation of the acute toxicity of the major UV-visible photoproduct of fludioxonil - detection in both skin and flesh samples of grape

机译:结构鉴定和主要紫外可见光的氟地奈的急性毒性估计-在葡萄的皮肤和肉样品中进行检测

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摘要

Ultraviolet (UV)-visible irradiation of fludioxonil was investigated with two photoreactors using either a mercury or xenon vapor lamp. In both cases, it led to the formation of only one photoproduct in significant amount: 2-(2,2-difluorobenzo[d][1,3]dioxol-4-yl)-2-(nitrosomethylene)-4-oxobutanenitrile, which has been characterized using Liquid Chromatography - High Resolution Tandem Mass Spectrometry (LC-HR-MS/MS) coupling. A photolysis pathway has been proposed to rationalize its formation in degassed water. In vitro bioassays on Vibrio fischeri bacteria showed that UV-vis irradiation of an aqueous solution of fludioxonil significantly increases its toxicity. Because no other by-product was detected in significant amount, the photoproduct mentioned abovemay be considered mainly responsible for this increase in toxicity. Grape berries treated with a 50 ppm aqueous solution of fludioxonil were submitted to UV-visible irradiation under laboratory conditions. The fungicide and photoproduct were detected in both skin and flesh of berries, even after they have been rinsed with water. The ability of the photoproduct to pass through the fruit skin is comparable with that of fludioxonil. These results are of concern for consumers because they mean that water tap rinsing does not lead to efficient removing of both compounds. Copyright (C) 2015 John Wiley & Sons, Ltd.
机译:用汞或氙蒸气灯,用两个光反应器研究了氟尿毒的紫外线(UV)可见光照射。在这两种情况下,它仅导致形成大量光产物:2-(2,2-二氟苯并[d] [1,3]二氧杂-4-基)-2-(亚硝基亚甲基)-4-氧代丁腈,使用液相色谱-高分辨率串联质谱(LC-HR-MS / MS)耦合进行了表征。已经提出了光解途径以合理化其在脱气水中的形成。对费氏弧菌细菌的体外生物测定表明,氟迪莫尼水溶液的紫外线可见光显着增加了其毒性。由于未检测到大量其他副产物,因此可以认为上述光产物是造成这种毒性增加的主要原因。在实验室条件下,将经过50 ppm氟狄索尼水溶液处理的葡萄浆果置于UV可见光照射下。即使用水冲洗浆果,也可以在浆果的皮肤和果肉中检测到杀菌剂和光产物。光产物通过果皮的能力与氟地西尼相当。这些结果引起消费者的关注,因为它们意味着水冲洗不会导致有效去除两种化合物。版权所有(C)2015 John Wiley&Sons,Ltd.

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