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纳米塑料与水溶液中疏水环境相互作用的粗粒度分子动力学模拟

Coarse-grained molecular dynamics simulations of nanoplastics interacting with a hydrophobic environment in aqueous solution.

作者信息

Dettmann Lorenz F, Kühn Oliver, Ahmed Ashour A

机构信息

University of Rostock, Institute of Physics Albert-Einstein-Str. 23-24 D-18059 Rostock Germany

University of Rostock, Department of Life, Light and Matter (LLM) Albert-Einstein-Str. 25 D-18059 Rostock Germany.

出版信息

RSC Adv. 2021 Aug 16;11(44):27734-27744. doi: 10.1039/d1ra04439g. eCollection 2021 Aug 9.

Abstract

Nanoplastics (NPs) are emerging threats for marine and terrestrial ecosystems, but little is known about their fate in the environment at the molecular scale. In this work, coarse-grained molecular dynamics simulations were performed to investigate nature and strength of the interaction between NPs and hydrophobic environments. Specifically, NPs were simulated with different hydrophobic and hydrophilic polymers while carbon nanotubes (CNTs) were used to mimic surface and confinement effects of hydrophobic building blocks occurring in a soil environment. The hydrophobicity of CNTs was modified by introducing different hydrophobic and hydrophilic functional groups at their inner surfaces. The results show that hydrophobic polymers have a strong affinity to adsorb at the outer surface and to be captured inside the CNT. The accumulation within the CNT is even increased in presence of hydrophobic functional groups. This contribution is a first step towards a mechanistic understanding of a variety of processes connected to interaction of nanoscale material with environmental systems. Regarding the fate of NPs in soil, the results point to the critical role of the hydrophobicity of NPs and soil organic matter (SOM) as well as of the chemical nature of functionalized SOM cavities/voids in controlling the accumulation of NPs in soil. Moreover, the results can be related to water treatment technologies as it is shown that the hydrophobicity of CNTs and functionalization of their surfaces may play a crucial role in enhancing the adsorption capacity of CNTs with respect to organic compounds and thus their removal efficiency from wastewater.

摘要

纳米塑料(NPs)对海洋和陆地生态系统构成了新出现的威胁,但在分子尺度上,人们对它们在环境中的归宿知之甚少。在这项工作中,进行了粗粒度分子动力学模拟,以研究纳米塑料与疏水环境之间相互作用的性质和强度。具体而言,用不同的疏水和亲水聚合物模拟纳米塑料,同时使用碳纳米管(CNTs)来模拟土壤环境中疏水结构单元的表面和限制效应。通过在碳纳米管内表面引入不同的疏水和亲水官能团来改变其疏水性。结果表明,疏水聚合物对外表面有很强的吸附亲和力,并被捕获在碳纳米管内部。在存在疏水官能团的情况下,碳纳米管内的积累甚至会增加。这一贡献是朝着对与纳米级材料与环境系统相互作用相关的各种过程进行机理理解迈出的第一步。关于纳米塑料在土壤中的归宿,结果表明纳米塑料和土壤有机质(SOM)的疏水性以及功能化SOM空腔/孔隙的化学性质在控制纳米塑料在土壤中的积累方面起着关键作用。此外,这些结果可与水处理技术相关,因为研究表明,碳纳米管的疏水性及其表面功能化在提高碳纳米管对有机化合物的吸附能力以及从废水中去除有机化合物的效率方面可能起着至关重要的作用。

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