Department of Geological Sciences, University of Florida, Gainesville, FL, 32611, USA.
Experiment Research Institute, National Agricultural Products Quality Management Service, Kimcheon, 39660, Republic of Korea.
Environ Monit Assess. 2018 Jun 28;190(7):438. doi: 10.1007/s10661-018-6819-8.
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) 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 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 calculation provides more accurate information for farmers to produce agricultural products safe from pesticide residues.
预测施药后预收获期内残留农药浓度,以确保农产品安全十分必要。本研究采用时间依赖性消解模型对推荐剂量和 3 倍剂量下的施用于苹果的甲萘威(CB)、肟菌·戊唑醇(KM)、氟苯虫酰胺(FB)、除虫脲(FN)、百菌清(BT)和氯虫苯甲酰胺(CN)进行模拟,以估算预收获残留限量浓度(C),即预收获期内允许的农药浓度。与零级、一级和二级模型相比,双指数(DE)模型的结果最能拟合所有测试农药的消解趋势(相关系数为 0.91-0.99)。在所研究的农药中,苹果中 CB 的半衰期最短,为 2.9 和 6.6 天,而 FN 的半衰期最长,为 21.1-32.7 天。通过 DE 模型参数值估算了每种农药在苹果中的 C 值,可用于确定安全收获期,使苹果中的农药浓度低于其最大残留限量。应用 DE 模型进行 C 值计算可为农民提供更准确的信息,确保其生产的农产品不含农药残留。