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有机化合物与轮胎碎屑材料的分子相互作用与其他微塑料有很大的不同。

The molecular interactions of organic compounds with tire crumb materials differ substantially from those with other microplastics.

机构信息

Department of Environmental Geosciences, Center for Microbiology, Environmental Systems Science, Austria and Research Platform Plastics in the Environment and Society (PLENTY), University of Vienna, Althanstrasse 14, 1090 Vienna, Austria.

Department of Environmental Geosciences, Center for Microbiology, Environmental Systems Science, Austria.

出版信息

Environ Sci Process Impacts. 2020 Jan 1;22(1):121-130. doi: 10.1039/c9em00423h. Epub 2019 Nov 6.

DOI:10.1039/c9em00423h
PMID:31691685
Abstract

Tire materials are the most commonly found elastomers in the environment and they account for a significant fraction of microplastic pollution. In the discussions on the environmental impact of microplastics tire materials and their sorption properties have been largely overlooked. In this study we used experimental sorption data from six organic probe sorbates sorbing to two tire materials and their major components, styrene butadiene rubber and carbon black, to gain a better understanding of the underlying sorption processes of tire materials. Commonly applied models used to describe non-linear sorption processes were unable to fully explain sorption to tire materials but showed that absorption into the rubber fraction dominated the sorption process. Hydrophobicity was approximated using the hexadecane-water partitioning constant, which correlated very well with the distribution data obtained for styrene rubber, whereas the correlations between hydrophobicity of sorbates and the sorption data to the tire materials were poor. Although hydrophobicity plays an important role in sorption to tire materials, additional interactions must be taken into account. Overall, the processes involved in sorption to tire materials differed significantly from those governing sorption to other microplastics.

摘要

轮胎材料是环境中最常见的弹性体,它们占微塑料污染的很大一部分。在讨论微塑料轮胎材料的环境影响及其吸附特性时,这些特性在很大程度上被忽视了。在这项研究中,我们使用了从六种有机探针吸附剂吸附到两种轮胎材料及其主要成分苯乙烯-丁二烯橡胶和炭黑的实验吸附数据,以更好地了解轮胎材料的吸附过程。通常用于描述非线性吸附过程的模型无法完全解释对轮胎材料的吸附,但表明橡胶部分的吸收主导了吸附过程。使用十六烷-水分配常数来近似疏水性,这与从苯乙烯橡胶获得的分配数据非常吻合,而疏水性与对轮胎材料的吸附数据之间的相关性很差。尽管疏水性在轮胎材料的吸附中起着重要作用,但还必须考虑其他相互作用。总的来说,轮胎材料吸附过程与其他微塑料的吸附过程有很大的不同。

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