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Pesticide distribution and depletion kinetic determination in honey and beeswax: Model for pesticide occurrence and distribution in beehive products

机译:蜂蜜和蜂蜡中农药的分布和耗竭动力学测定:蜂箱产品中农药的发生和分布模型

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摘要

Beehive products such as honey, beeswax and recently pollen have been regarded for many years as appropriate sentinels for environmental pesticide pollutions. However, despite yearly application of hundreds of approved pesticides in agricultural fields, only a minor fraction of these organic compounds were actually detected in honey and beeswax samples. This observation has led us to question the general suitability of beehive products as a sentinel for synthetic organic pesticides applied in the field. The aim of the present study was to experimentally determine the distribution (logarithmic ratio of beeswax to honey pesticide concentration, LogD) and depletion kinetics (half-life) of selected pesticides in honey and beeswax as a measure of the latter matrixes to serve as a pesticide sentinel. The obtained parameters were used to extrapolate to pesticide burden in honey and beeswax samples collected from German and Israeli apiaries. In addition, we aimed to establish a mathematical model, enabling us to predict distribution of selected pesticides between honey to beeswax, by utilizing simple substance descriptors, namely, octanol/water partitioning coefficient, molar weight and Henry coefficient. Based on the present results, it appears that pesticides with LogD values > 1 and half-life in beeswax > 1 day, were likely to accumulate and detected in beeswax samples, and less likely to be found in honey. On the other hand, pesticides with negative LogD values were highly likely to be found in honey and less so in beeswax samples. Finally, pesticides with LogD values between 0–1 were expected to be found in both matrixes. The developed model was successfully applied to predict LogD values, thereby identifying octanol/water partitioning and molar weight as the most prominent substance descriptors, which affect pesticide distribution between honey and beeswax.
机译:蜂巢产品,例如蜂蜜,蜂蜡和最近的花粉,多年来一直被视为环境农药污染的适当标记。然而,尽管每年在农业领域中使用数百种批准的农药,但实际上在蜂蜜和蜂蜡样品中仅检测到这些有机化合物的一小部分。这一观察结果使我们对蜂箱产品作为现场应用的合成有机农药的前哨产品的一般适用性提出了质疑。本研究的目的是通过实验确定蜂蜜和蜂蜡中所选农药的分布(蜂蜡与蜂蜜农药浓度的对数比,LogD)和耗竭动力学(半衰期),作为后一种矩阵的量度。农药定点。获得的参数用于推断从德国和以色列养蜂场收集的蜂蜜和蜂蜡样品中农药的含量。此外,我们旨在建立一个数学模型,使我们能够利用简单的物质描述符,即辛醇/水分配系数,摩尔质量和亨利系数,来预测蜂蜜与蜂蜡之间所选农药的分布。根据目前的结果,似乎LogD值> 1且在蜂蜡中半衰期> 1天的农药很可能在蜂蜡样品中积累和检测到,而在蜂蜜中发现的可能性较小。另一方面,在蜂蜜中极有可能发现LogD值为负的农药,而在蜂蜡样品中则很少。最后,在两种基质中均预期发现LogD值为0–1的农药。所开发的模型已成功地用于预测LogD值,从而确定了辛醇/水分配和摩尔质量是最突出的物质描述符,这影响了农药在蜂蜜和蜂蜡之间的分布。

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