首页> 外文期刊>Journal of Environmental Science and Health, Part B: Pesticides, Food Contaminants, and Agricultural Wastes >Dissipation, half-lives, and mass spectrometric identification of endosulfan isomers and the sulfate metabolite on three field-grown vegetables
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Dissipation, half-lives, and mass spectrometric identification of endosulfan isomers and the sulfate metabolite on three field-grown vegetables

机译:三种田间种植的蔬菜中硫丹异构体和硫酸盐代谢物的耗散,半衰期和质谱鉴定

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摘要

Endosulfan 3 EC, a mixture of α- and β-stereo isomers, was sprayed on field-grown pepper, melon, and sweet potato plants at the recommended rate of 0.44 kg A.I. acre−1. Plant tissue samples (leaves, fruits, or edible roots) were collected 1 h to 30 days following spraying and analyzed for endosulfan isomers (α- and β-isomers). Analysis of samples was accomplished using a gas chromatograph (GC) equipped with a mass detector in total ion mode. The results indicated the formation of endosulfan sulfate as the major metabolite of endosulfan sulfite and the relatively higher persistence of the β-isomers as compared to the α-isomer. The initial total residues (α- and β-isomers plus endosulfan sulfate) were higher on leaves than on fruits. On pepper and melon fruits, the α-isomer, which is the more toxic to mammals, dissipated faster (T1/2 = 1.22 and 0.95 d, respectively) than the less toxic β-isomer (T1/2 = 3.0 and 2.5 d, respectively). These results confirm the greater loss of the α-isomer compared to the β-isomer, which can ultimately impact endosulfan dissipation in the environment. Additionally, the higher initial residues of endosulfan on pepper and sweet potato leaves should be considered of great importance for timing field operations and the safe entry of harvesters due to the high mammalian toxicity of endosulfan.
机译:硫丹3 EC,α-和β-立体异构体的混合物,以建议的0.44 kg A.I.喷洒到田间种植的胡椒,甜瓜和甘薯植物上。英亩â1’。喷雾后1 h至30天收集植物组织样品(叶子,果实或可食的根),并分析硫丹异构体(α和β异构体)。使用配备有质量检测器的气相色谱仪(GC)以总离子模式完成样品分析。结果表明形成的硫丹硫酸盐作为硫丹亚硫酸盐的主要代谢产物,并且相对于α-异构体的β-异构体的持久性更高。初始总残留量(α和β异构体加硫丹硫酸盐)在叶上比在水果上更高。在胡椒和甜瓜果实上,对哺乳动物更具毒性的α-异构体比毒性较小的β-异构体(分别分别耗散T 1/2 = 1.22和0.95 d)耗散得更快( T 1/2 分别为3.0和2.5 d)。这些结果证实与α​​-异构体相比,α-异构体的损失更大,这最终可能会影响环境中的硫丹消散。此外,由于硫丹对哺乳动物的高毒性,因此应考虑在胡椒和甘薯叶上残留较高的硫丹残留,这对于定时田间作业和收割机的安全进入非常重要。

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    Department of Plant and Soil Science, Kentucky State University, Frankfort, Kentucky, USA;

    Department of Horticulture, University of Kentucky, Lexington, Kentucky, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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