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Modeling of the sorption and diffusion processes of volatile organic air pollutants in grape fruits.

机译:葡萄果实中挥发性有机空气污染物吸附和扩散过程的模型。

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摘要

A mathematical model for the description of the sorption and diffusion processes of gaseous toluene and p-xylene in fruits of grape has been proposed. This model is based on the Fick's II low regarding a particle with a spherical shape (such as the berry of grapevine) and describes changes of air pollutant concentrations in different layers of the fruit, that is, the wax, peel, and pulp, during an exposure to contaminated air. The mass transfer coefficient and diffusion coefficients in the respective layers can be estimated using the experimental values. The theoretical data and the results from the exposure under steady-state laboratory conditions were compared and showed a good applicability of the proposed model for the prediction of volatile air pollutant partitioning in grape berries.
机译:建立了描述葡萄中气态甲苯和对二甲苯的吸附和扩散过程的数学模型。该模型基于Fick的II低值,该值与球形颗粒(例如葡萄的浆果)有关,描述了在水果的不同层(即蜡,果皮和果肉)中空气污染物浓度的变化。暴露于受污染的空气中。可以使用实验值来估计各层中的传质系数和扩散系数。比较了理论数据和稳态实验室条件下暴露的结果,表明该模型对葡萄浆果中挥发性空气污染物分配的预测具有良好的适用性。

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