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二氧化钛纳米颗粒对微塑料在石英砂中迁移和沉积的影响。

Influence of titanium dioxide nanoparticles on the transport and deposition of microplastics in quartz sand.

机构信息

The Key Laboratory of Water and Sediment Sciences, Ministry of Education, College of Environmental Sciences and Engineering, Peking University, Beijing, 100871, PR China; Natural History Research Center, Shanghai Natural History Museum, Shanghai Science and Technology Museum, Shanghai, 200127, PR China.

The Key Laboratory of Water and Sediment Sciences, Ministry of Education, College of Environmental Sciences and Engineering, Peking University, Beijing, 100871, PR China.

出版信息

Environ Pollut. 2019 Oct;253:351-357. doi: 10.1016/j.envpol.2019.07.006. Epub 2019 Jul 9.

Abstract

The influence of titanium dioxide nanoparticles (nTiO) on the transport and deposition of polystyrene microplastics (MPs) in saturated quartz sand was investigated in NaCl solutions with ionic strengths from 0.1 to 10 mM at two pH conditions (pH 5 and 7). Three different-sized polystyrene (PS) MPs (diameter of 0.2, 1, and 2 μm) were concerned in present study. We found that for all three different-sized MPs in NaCl solutions (0.1, 1 and 10 mM) at both pH 5 and 7, lower breakthrough curves and higher retained profiles of MPs with nTiO copresent in suspensions relative to those without nTiO were obtained, demonstrating that the copresence of nTiO in MPs suspensions decreased MPs transport and increased their deposition in quartz sand under all examined conditions. The mechanisms contributing to the increased MPs deposition with nTiO in suspensions at two pH conditions were different. The formation of MPs-nTiO heteroaggregates and additional deposition sites provided by previously deposited nTiO were found to drive to the increased MPs deposition with nTiO in suspensions at pH 5, while the formation of MPs-nTiO aggregates, additional deposition sites and increased surface roughness induced by the pre-deposited nTiO on quartz sand surfaces were responsible for the enhanced MPs deposition at pH 7. The results give insights to predict the fate and transport of different-sized MPs in porous media in the copresence of engineered nanoparticles.

摘要

在 pH 值为 5 和 7 的两种条件下,用离子强度为 0.1 至 10 mM 的 NaCl 溶液研究了二氧化钛纳米颗粒 (nTiO) 对聚苯乙烯微塑料 (MPs) 在饱和石英砂中迁移和沉积的影响。本研究涉及三种不同粒径的聚苯乙烯 (PS) MPs(直径分别为 0.2、1 和 2 μm)。我们发现,对于在 pH 值为 5 和 7 的 NaCl 溶液中(0.1、1 和 10 mM)的所有三种不同粒径的 MPs,在悬浮液中 nTiO 共存在时, MPs 的穿透曲线更低,保留曲线更高,这表明在所有研究条件下,nTiO 共存在 MPs 悬浮液中会降低 MPs 的迁移并增加其在石英砂中的沉积。在两种 pH 值条件下,由于 nTiO 共存在悬浮液中导致 MPs 沉积增加的机制不同。在 pH 值为 5 时,发现 MPs-nTiO 异质团聚体的形成和由先前沉积的 nTiO 提供的额外沉积位点是导致 MPs 与 nTiO 共存在悬浮液中沉积增加的原因,而在 pH 值为 7 时, MPs-nTiO 团聚体的形成、额外的沉积位点以及由预先沉积在石英砂表面上的 nTiO 引起的表面粗糙度增加是导致 MPs 沉积增强的原因。研究结果为预测不同粒径的 MPs 在含有工程纳米颗粒的多孔介质中的命运和迁移提供了新的思路。

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