首页> 外文期刊>International journal of environmental analytical chemistry >Different transformation of carbosulfan to its higher toxic metabolites in pakchoi (Brassica campestris ssp.) and cucumber (Cucumissativus L.) after field application
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Different transformation of carbosulfan to its higher toxic metabolites in pakchoi (Brassica campestris ssp.) and cucumber (Cucumissativus L.) after field application

机译:田间施用后小白菜(Brassica campestris ssp。)和黄瓜(Cucumissativus L.)中碳硫丹向高毒性代谢产物的不同转化

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Carbosulfan (CAS) is used as an insecticide on vegetables, but its toxicity might increase due to the formation of higher toxic metabolites including carbofuran (CAN), 3-hydroxycarbofuran (3-OH) and 3-ketocarbofuran (3-KETO). In this study, the transformation of CAS to its metabolites in pakchoi (Brassica campestris ssp.) and cucumber (Cucumissativus L.) was investigated in the field in Beijing and Changsha and in a greenhouse in Hangzhou. CAS was metabolised to CAN, 3-OH and 3-KETO in pakchoi but only to CAN and 3-OH in cucumber. In pakchoi, the degradation of CAS (as measured by the DT50 value, the time marking the disappearance of 50% of the pesticide) was the fastest in Hangzhou (0.7 d), followed by Changsha (1.4 d) and Beijing (2.3 d), whereas in cucumber, its degradation was the fastest in Changsha (1.6 d) and Hangzhou (1.6 d), followed by Beijing (2.5 d). These results suggested the monitoring of metabolites should be a prior objective for CAS, and different metabolites should be considered when assessing the risk of CAS in different vegetables.
机译:碳硫丹(CAS)被用作蔬菜上的杀虫剂,但由于形成了毒性更高的代谢产物,包括碳呋喃(CAN),3-羟基碳呋喃(3-OH)和3-酮碳呋喃(3-KETO),其毒性可能会增加。在这项研究中,在北京和长沙的田间以及在杭州的温室中,研究了小菜(Brassica campestris ssp。)和黄瓜(Cucumissativus L.)中CAS转化为其代谢产物的过程。小白菜中的CAS代谢为CAN,3-OH和3-KETO,而黄瓜中则仅代谢为CAN和3-OH。在小白菜中,CAS的降解(以DT50值表示,标志着50%农药消失的时间)在杭州(0.7 d)最快,其次是长沙(1.4 d)和北京(2.3 d)。黄瓜的降解速度最快的是长沙(1.6 d)和杭州(1.6 d),其次是北京(2.5 d)。这些结果表明,监测代谢产物应是CAS的首要目标,在评估不同蔬菜中CAS的风险时应考虑不同的代谢产物。

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