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首页> 外文期刊>International Journal of Environmental Research and Public Health >Migration and Accumulation of Octachlorodipropyl Ether in Soil-Tea Systems in Young and Old Tea Gardens
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Migration and Accumulation of Octachlorodipropyl Ether in Soil-Tea Systems in Young and Old Tea Gardens

机译:茶园中老茶园中八氯二丙醚的迁移和积累

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The migration and accumulation of octachlorodipropyl ether (OCDPE) in soil-tea systems were investigated using a gas chromatography-electron capture detector (GC-ECD) method in young and old tea gardens. When the residual concentration of OCDPE was 100 g a.i. hm ?2 in soils, the peak concentrations of OCDPE in fresh leaves of young and old tea plants were 0.365 mg/kg and 0.144 mg/kg, taking 45 days and 55 days, respectively. Equations for the accumulation curves of OCDPE in fresh leaves of young and old tea plants were C t = 0.0227e 0.0566t (R 2 = 0.9154) and C t = 0.0298e ?0.0306t (R 2 = 0.7156), and were C t = 3.8435e 0.055t (R 2 = 0.9698) and C t = 1.5627e ?0.048t (R 2 = 0.9634) for dissipation curves, with a half-life of 14.4 days and 12.6 days, respectively. These results have practical guiding significance for controlling tea food safety.
机译:利用气相色谱-电子捕获检测器(GC-ECD)方法研究了八氯二丙醚(OCDPE)在土壤-茶系统中在老旧茶园中的迁移和积累。当OCDPE的残余浓度为100g a.i时。在土壤hm 2中,年轻和老茶树的新鲜叶片中OCDPE的峰值浓度分别为45天和55天,分别为0.365 mg / kg和0.144 mg / kg。幼小和老茶树鲜叶中OCDPE的累积曲线方程为C t = 0.0227e 0.0566t(R 2 = 0.9154)和C t =0.0298e≤0.0306t(R 2 = 0.7156),并且为C t对于耗散曲线,它们的半衰期分别为3.8435e 0.055t(R 2 = 0.9698)和C t =1.5627e≤0.048t(R 2 = 0.9634),半衰期分别为14.4天和12.6天。这些结果对控制茶叶食品安全具有实际指导意义。

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