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针铁矿涂层在非均相多孔介质中对塑料纳米颗粒运移的双重作用:捕集体表面粗糙度的意义

Dual roles of goethite coating on the transport of plastic nanoparticles in heterogeneous porous media: The significance of collector surface roughness.

作者信息

Dong Pengcheng, Liang Yan, Shen Chongyang, Jiang Erxiao, Bradford Scott A

机构信息

School of Resources, Environment and Materials, Guangxi University, Nanning 530004, China; Guangxi Key Laboratory of Emerging Contaminants Monitoring, Early Warning and Environmental Health Risk Assessment, Nanning, China.

School of Resources, Environment and Materials, Guangxi University, Nanning 530004, China; Guangxi Key Laboratory of Emerging Contaminants Monitoring, Early Warning and Environmental Health Risk Assessment, Nanning, China.

出版信息

J Hazard Mater. 2024 May 15;470:134153. doi: 10.1016/j.jhazmat.2024.134153. Epub 2024 Mar 28.

Abstract

This study systematically examines the roles of positive goethite on the retention and release of negative plastic nanoparticles (PSNPs) with different surface functional groups (Blank, -COOH, and -NH). It provides the first evidence for the dual roles of goethite coatings on colloid transport; e.g., increased transport caused by surface morphology modification or decreased transport due to increased surface roughness and charge heterogeneity. Although previous work has shown that goethite-coated sand increases the retention of negative colloids, this work demonstrates that collector surface roughness can also reduce the retention of PSNPs due to increased interaction energy profiles. Nonmonotonic retention of all the different functionalized PSNPs was observed in goethite-coated rough sand, and the magnitude of variations was contingent on the PSNP functionalization, the solution ionic strength (IS), and the goethite coating. The release of PSNPs with IS decrease (phase I) and pH increase (phase II) varied significantly due to differences in energy barriers to detachment, e.g., release in phase I was inhibited in both goethite-coated sands, whereas release in phase II was enhanced in coated smooth sand but completely inhibited in rough sand. The findings of this study provide innovative insight into transport mechanisms for colloidal and colloid-associated contaminants.

摘要

本研究系统地考察了正向针铁矿对具有不同表面官能团(空白、-COOH和-NH)的负性塑料纳米颗粒(PSNPs)的截留和释放作用。它为针铁矿涂层在胶体运移中的双重作用提供了首个证据;例如,表面形态改变导致运移增加,或表面粗糙度和电荷非均一性增加导致运移减少。尽管先前的研究表明针铁矿包覆砂会增加负性胶体的截留,但本研究表明,由于相互作用能分布增加,捕集剂表面粗糙度也会降低PSNPs的截留。在针铁矿包覆的粗糙砂中观察到所有不同功能化PSNPs的非单调截留,截留变化的幅度取决于PSNP功能化、溶液离子强度(IS)和针铁矿涂层。由于脱离能垒的差异,PSNPs随IS降低(第一阶段)和pH升高(第二阶段)的释放变化显著,例如,在两种针铁矿包覆砂中第一阶段的释放均受到抑制,而在包覆的光滑砂中第二阶段的释放增强,但在粗糙砂中完全被抑制。本研究结果为胶体及与胶体相关污染物的运移机制提供了创新性见解。

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