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当氯被溴取代时,多卤代持久性有机污染物的分配特性会如何变化?

How do the partitioning properties of polyhalogenated POPs change when chlorine is replaced with bromine?

作者信息

Puzyn Tomasz, Suzuki Noriyuki, Haranczyk Maciej

机构信息

National Institute for Environmental Studies, Research Center for Environmental Risk, Exposure Assessment Research Section, 16-2 Onogawa, Tsukuba, Ibaraki, 305-8506, Japan.

出版信息

Environ Sci Technol. 2008 Jul 15;42(14):5189-95. doi: 10.1021/es8002348.

Abstract

Information about the mobility and the partitioning properties of brominated persistent organic pollutants, the environmental levels of which are sometimes higher than those of the chlorinated analogues, is limited. We estimated n-octanol/ water (log K(OW)), n-octanol/air (log K(OA)), and air/water (log K(AW)) partition coefficients for 1436 chloro- and bromo-analogues of dibenzo-p-dioxins, dibenzofurans, biphenyls, naphthalenes, diphenyl ethers, and benzenes by employing quantitative structure-property relationship (QSPR) techniques. The searches for similar partitioning patterns were performed by means of two-dimensional cluster analysis. Five classes of compounds were identified. Each of the class is characterized by similar partition coefficients and, in consequence, similar environmental properties. Finally the data was fitted into a simple multimedia model involving the partitioning map. In addition, we found thatthe changes in the partition coefficients upon the replacement of chlorine with bromine were constant: 0.11, 0.31, and -0.21 per bromine atom for log K(OW), log K(OA), and log K(AW), respectively. On the basis of this observation, a method for rapid estimation of changes in the partition coefficient upon chlorine-bromine substitution was proposed.

摘要

溴化持久性有机污染物的迁移率和分配特性信息有限,其在环境中的含量有时高于相应的氯化类似物。我们采用定量结构-性质关系(QSPR)技术估算了1436种二苯并对二恶英、二苯并呋喃、联苯、萘、二苯醚和苯的氯代及溴代类似物的正辛醇/水(log K(OW))、正辛醇/空气(log K(OA))和空气/水(log K(AW))分配系数。通过二维聚类分析寻找相似的分配模式。确定了五类化合物。每一类化合物的特征是具有相似的分配系数,因此具有相似的环境性质。最后将数据拟合到一个包含分配图谱的简单多介质模型中。此外,我们发现用溴取代氯时分配系数的变化是恒定的:log K(OW)、log K(OA)和log K(AW)每增加一个溴原子分别为0.11、0.31和-0.21。基于这一观察结果,提出了一种快速估算氯-溴取代时分配系数变化的方法。

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