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- W2076400571 abstract "The air-to-vegetation pathway may substantially contribute to human and food-chain exposure to organic chemicals since the surface area of the above-ground parts of vegetation by far exceeds the area the plants are growing on. A model for assessing the atmosphere-to-vegetation transfer of persistent organic chemicals is discussed. It is based on the fugacity concept and uses the 1-octanol/ water and cuticle/water partition coefficients, aqueous solubility, and the saturation vapor pressure of the chemicals as input data. Equilibrium concentrations in plant tissues and air-to-vegetation bioconcentration factors can be estimated. Further, the model permits prediction of the compartment(s) in vegetation where a given chemical will preferentially accumulate. An approach for assessing semiquantitatively the potential for (re)volatilization of organics from leaves is also suggested. Various applications of the model are shown for reference compounds of widely differing physicochemical properties." @default.
- W2076400571 created "2016-06-24" @default.
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- W2076400571 date "1990-06-01" @default.
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- W2076400571 title "Estimating partitioning and transport of organic chemicals in the foliage/atmosphere system: discussion of a fugacity-based model" @default.
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- W2076400571 doi "https://doi.org/10.1021/es00076a006" @default.
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