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The evolution and future of environmental partition coefficients

机译:环境分配系数的演变和未来

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Partition or distribution coefficients (and increasingly referred to as partition ratios) are widely used in environmental science to relate the concentration of a chemical solute in one phase to that in a second phase between which equilibrium applies or is approached. The solutes include organic and inorganic substances; the focus of this paper being on the former. The phases of interest include air, water, soils, sediments, aerosols, and biotic phases, such as lipids, blood, and various tissues. Availability of reliable partition coefficients for contaminants is essential for regulatory and scientific purposes, the general aim being to understand and predict the distribution of the substances in multimedia environmental and biological systems. The history of partition coefficients is reviewed, followed by a brief outline of their theoretical basis and a discussion of methods for determining partition coefficients both empirically and using a variety of predictive methods. It is suggested that ultimately a combination of empirical measurements, quantitative structure-property relationships, and computationally intensive quantum chemical molecular modeling techniques is required to provide accurate data for the large and increasing number of chemicals of commerce that may enter the environment.
机译:分配系数或分配系数(并且越来越多地称为分配比)在环境科学中被广泛使用,以将一相中的化学溶质浓度与第二相中的溶质浓度联系起来,或者在两者之间达到或接近平衡。溶质包括有机和无机物质。本文的重点是前者。感兴趣的相包括空气,水,土壤,沉积物,气溶胶和生物相,例如脂质,血液和各种组织。可靠的污染物分配系数对于监管和科学目的至关重要,其总体目标是了解和预测物质在多媒体环境和生物系统中的分布。回顾了分配系数的历史,随后简要概述了它们的理论基础,并讨论了根据经验和使用各种预测方法确定分配系数的方法。建议最终需要经验测量,定量结构-性质关系和计算密集型量子化学分子建模技术的组合,以为可能进入环境的大量商业化学品提供准确的数据。

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