具有相似的log P和log Koc值的化学物质之间具有很高的结构和分子参数多样性

Carr J. Smith, T. Perfetti, Gene M. Ko, Suzanne B. Hartigan
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引用次数: 0

摘要

具有持久性(P)和高流动性(M)的化学物质会穿过河岸等自然屏障和水处理厂的人工屏障,对饮用水资源构成危害。如果该化学物质也是有毒的(T),即可归类为PMT,则该物质可能作为潜在的饮用水污染物而受到特别关注。在常规的水取样过程中,具有高迁移率的极性物质的检测和定量可能存在问题。德国环境署(UBA)正在考虑使用Log Koc值作为迁移率(M)的代表。Log Koc与Log P的关系为:Log Koc = 0.69 Log P + 0.22。在这项研究中,我们证明了log P值等于或非常接近2.0、3.0或4.0(以及它们伴随的log Koc值)的化学物质在化学结构、分子量、摩尔体积和计算的摩尔折射率(CMR)方面会发生显著变化,CMR与分子的平均极化率有关。在特定的对数P或对数Koc值下,与化学行为相关的化学结构和分子参数的巨大潜在多样性表明,对数Koc可能不包含足够的信息,无法作为化学物质迁移率(M)的独立替代品,即与其从饮用水资源通过水厂净化过程移动的能力有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High structural and molecular parameter diversity among chemicals with similar log P and log Koc values
Chemicals possessing persistence (P) and high mobility (M) can present a hazard to drinking water resources by traversing natural barriers like riverbanks and artificial barriers found in water treatment plants. If the chemical is also toxic (T), i.e. classifiable as a PMT, the agent might be of particular concern as a potential drinking water contaminant. During routine water sampling, detection and quantitation of polar substances with high mobility can be problematic. The German Environment Agency (UBA) is considering the use of the Log Koc value as a proxy for mobility (M). Log Koc is related to Log P by the equation Log Koc = 0.69 Log P + 0.22. In this study, we demonstrate that chemicals with log P values at or very close to 2.0, 3.0 or 4.0 (and their concomitant log Koc values) can vary significantly in their chemical structures, molecular weights, molar volumes, and calculated molar refractivity (CMR), which is related to the mean polarizability of a molecule. The large degree of potential diversity in chemical structure and molecular parameters related to chemical behavior at a particular log P or log Koc value suggests that log Koc might not contain enough information to function as a standalone surrogate for the mobility (M) of a chemical, i.e. as related to its ability to move from a drinking water resource through the water plant purification process.
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