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Pesticide residue dynamics in passion fruits: Comparing field trial and modelling results

机译:百香果中农药残留的动态:比较田间试验和建模结果

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摘要

We evaluated the exposure to pesticides from the consumption of passion fruits and subsequent human health risks by combining several methods: (i) experimental field studies including the determination of pesticide residues in/on passion fruits, (ii) dynamic plant uptake modelling, and (iii) human health risk assessment concepts. Eight commonly used pesticides were applied onto passion fruits cultivated in Colombia. Pesticide concentrations were measured periodically (between application and harvest) in whole fruits and fruit pulp. Measured concentrations were compared with predicted residues calculated with a dynamic and crop-specific pesticide uptake model, namely dynamiCROP. The model accounts for the time between pesticide application and harvest, the time between harvest and consumption, the amount of spray deposition on plant surfaces, uptake processes, dilution due to crop growth, degradation in plant components, and reduction due to food processing (peeling). Measured and modelled residues correspond well (r~2 = 0.88-0.99), with all predictions falling within the 90% confidence interval of the measured values. A mean error of 43% over all studied pesticides was observed between model estimates and measurements. The fraction of pesticide applied during cultivation that is eventually ingested by humans is on average 10~(-4)-10~(-6), depending on the time period between application and ingestion and the processing step considered. Model calculations and intake fractions via fruit consumption based on experimental data corresponded well for all pesticides with a deviation of less than a factor of 2. Pesticide residues in fruits measured at recommended harvest dates were all below European Maximum Residue Limits (MRLs) and therefore do not indicate any violation of international regulatory thresholds.
机译:我们通过结合以下几种方法评估了食用百香果的农药暴露量以及随后对人类健康的危害:(i)实验现场研究,包括确定百香果中/农药残留的方法,(ii)动态植物吸收模型,以及( iii)人类健康风险评估概念。在哥伦比亚种植的百香果上使用了八种常用农药。定期(在施用和收获之间)测量整个水果和果肉中的农药浓度。将测得的浓度与通过动态和特定于农作物的农药吸收模型即dynamiCROP计算的预测残留量进行比较。该模型说明了农药施用与收获之间的时间,收获与消耗之间的时间,植物表面上的喷雾沉积量,吸收过程,作物生长引起的稀释,植物成分的降解以及食品加工(去皮)的减少)。测得的和建模的残差很好地对应(r〜2 = 0.88-0.99),所有预测都落在测量值的90%置信区间内。在模型估计和测量之间,观察到所有研究农药的平均误差为43%。在耕作过程中最终被人类摄入的农药比例平均为10〜(-4)-10〜(-6),具体取决于施用和摄入之间的时间间隔以及所考虑的加工步骤。基于农药数据的基于水果数据的模型计算和摄入分数与所有农药的偏差都小于2。这些农药在建议的收获日期所测水果中的农药残留均低于欧洲最大残留限量(MRL),因此不表示任何违反国际监管标准的行为。

著录项

  • 来源
    《Chemosphere》 |2012年第7期|p.850-855|共6页
  • 作者单位

    ETH Zurich, Institute of Environmental Engineering, Schafmattstrasse 6, CH-8093 Zurich, Switzerland;

    Institute of Energy Economics and the Rational Use of Energy, University of Stuttgart, Hessbruehlstrasse 49a, 70565 Stuttgart, Germany;

    International Center for Tropical Agriculture (CIAT), Recta Cali-Palmira, Apartado Aereo 6713 Cali, Colombia;

    International Center for Tropical Agriculture (CIAT), Recta Cali-Palmira, Apartado Aereo 6713 Cali, Colombia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    pesticides; passion fruit; human intake fraction; dynamic plant uptake model;

    机译:农药百香果;人体摄入量;动态植物吸收模型;

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