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Improved dissipation kinetic model to estimate permissible pre-harvest residue levels of pesticides in apples

机译:改进的耗散动力学模型以估算苹果中农药的允许收获前残留量

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Prediction of residual concentrations of applied pesticides during the pre-harvest period may be required to ensure the safety of agricultural products. In this study, time-dependent dissipation trends of carbaryl (CB), kresoxim-methyl (KM), flubendiamide (FB), flufenoxuron (FN), bitertanol (BT), and chlorantraniliprole (CN) applied to apples at recommended and threefold greater doses were modeled to estimate pre-harvest residue limit concentrations (C (PHRL)) indicating permissible pesticide concentrations during the pre-harvest period. Double-exponential (DE) model results best fit the dissipation trends of all tested pesticides (correlation coefficients of 0.91-0.99) compared to zero-, first-, and second-order models. Among the pesticides examined, CB half-lives in apples of 2.9 and 6.6 days were the shortest, while those of FN (21.1-32.7 days) were the longest. The C (PHRL) values for each pesticide in apples were estimated with DE model parameter values and could be used to determine harvest dates for safe apples with pesticide concentrations below their maximum residue limits. Application of the DE model for C (PHRL) calculation provides more accurate information for farmers to produce agricultural products safe from pesticide residues.
机译:为了确保农产品安全,可能需要预测收获前残留农药的残留浓度。在这项研究中,将甲萘威(CB),克雷索辛甲基(KM),氟苯二酰胺(FB),氟苯氧隆(FN),比替洛尔(BT)和氯氰菊酯(CN)随时间的消散趋势推荐给苹果,并提高了三倍。对剂量进行建模以估计收获前残留限量浓度(C(PHRL)),以指示收获前期间允许的农药浓度。与零阶,一阶和二阶模型相比,双指数(DE)模型的结果最适合所有测试农药的耗散趋势(相关系数为0.91-0.99)。在所检查的农药中,苹果中CB的半衰期最短为2.9天和6.6天,而FN的半衰期最长(21.1-32.7天)。苹果中每种农药的C(PHRL)值均采用DE模型参数值进行估算,可用于确定农药浓度低于其最大残留限量的安全苹果的收获日期。 DE模型用于C(PHRL)计算的应用为农民生产不受农药残留影响的农产品提供了更准确的信息。

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