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首页> 外文期刊>Environmental Science and Pollution Research >Photodegradation of the novel fungicide fluopyram in aqueous solution: kinetics, transformation products, and toxicity evolvement
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Photodegradation of the novel fungicide fluopyram in aqueous solution: kinetics, transformation products, and toxicity evolvement

机译:新型杀菌剂氟吡草胺在水溶液中的光降解:动力学,转化产物和毒性演变

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The aqueous photodegradation of fluopyram was investigated under UV light (lambda aeyenaEuroe200 nm) and simulated sunlight irradiation (lambda aeyenaEuroe290 nm). The effect of solution pH, fulvic acids (FA), nitrate (NO3 (-)), Fe (III) ions, and titanium dioxide (TiO2) on direct photolysis of fluopyram was explored. The results showed that fluopyram photodegradation was faster in neutral solution than that in acidic and alkaline solutions. The presence of FA, NO3 (-), Fe (III), and TiO2 slightly affected the photodegradation of fluopyram under UV irradiation, whereas the photodegradation rates of fluopyram with 5 mg L-1 Fe (III) and 500 mg L-1 TiO2 were about 7-fold and 13-fold faster than that without Fe (III) and TiO2 under simulated sunlight irradiation, respectively. Three typical products for direct photolysis of fluopyram have been isolated and characterized by liquid chromatography tandem mass spectrometry. These products resulted from the intramolecular elimination of HCl, hydroxyl-substitution, and hydrogen extraction. Based on the identified transformation products and evolution profile, a plausible degradation pathway for the direct photolysis of fluopyram in aqueous solution was proposed. In addition, acute toxicity assays using the Vibrio fischeri bacteria test indicated that the transformation products were more toxic than the parent compound.
机译:在紫外光(λaeyenaEuroe200 nm)和模拟日光照射下(lambda aeyenaEuroe290 nm)研究了氟吡草胺在水中的光降解性能。探讨了溶液的pH,富里酸(FA),硝酸盐(NO3(-)),铁(III)离子和二氧化钛(TiO2)对氟吡喃直接光解的影响。结果表明,氟吡喃在中性溶液中的光降解比在酸性和碱性溶液中的快。 FA,NO3(-),Fe(III)和TiO2的存在对紫外线照射下氟吡菌酰胺的光降解有轻微影响,而5 mg L-1 Fe(III)和500 mg L-1 TiO2氟吡菌酰胺的光降解速率在模拟的阳光照射下,它们分别比不含Fe(III)和TiO2的快约7倍和13倍。液相色谱串联质谱法已分离出了三种直接用于氟吡菌胺直接光解的典型产物,并对其进行了表征。这些产物是由分子内的HCl消除,羟基取代和氢气萃取产生的。基于鉴定出的转化产物和进化特征,提出了氟吡喃在水溶液中直接光解的可行降解途径。另外,使用费氏弧菌细菌试验的急性毒性试验表明,转化产物比母体化合物毒性更大。

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