The Key Laboratory of Water and Sediment Sciences, Ministry of Education, State Environmental Protection Key Laboratory of All Material Fluxes in River Ecosystems, College of Environmental Sciences and Engineering, Peking University, Beijing 100871, PR China; Currently at Department of Forensic Science, Fujian Police College, Fuzhou 350007, PR China.
The Key Laboratory of Water and Sediment Sciences, Ministry of Education, State Environmental Protection Key Laboratory of All Material Fluxes in River Ecosystems, College of Environmental Sciences and Engineering, Peking University, Beijing 100871, PR China.
J Hazard Mater. 2023 Jan 15;442:130084. doi: 10.1016/j.jhazmat.2022.130084. Epub 2022 Sep 29.
Freeze-thaw (FT) cycles would alter physical and chemical properties of soil and thus influence the transport of plastic particles (one type of emerging contaminant with great concerns). This study was designed to investigate the effects of FT treatment on the mobility of plastic particles (nanoplastics as representative) in columns packed with natural soils (i.e. loamy sand and sandy soil, quartz sand employed as comparison). We found that FT treatment of different types of porous media would induce different transport behaviors of plastic particles. Specifically, FT treatment of quartz sand did not affect plastic particles mobility. While FT treatment of loamy sand and sandy soil increased plastic particles transport. The increased pore sizes and disintegration of small soil particles from soils (the detached soil would serve as mobile vehicle for the transport of plastic particle) led to the facilitated mobility of plastic particles in two types of soils after FT treatment. The presence of preferential flow paths induced by FT treatment also drove to the enhanced mobility of plastic particles in sandy soil with FT treatment. This study clearly showed that the mobility of model plastic particles in two types of natural soils was greatly enhanced by FT treatment.
冻融(FT)循环会改变土壤的物理和化学性质,从而影响塑料颗粒(一种具有很大关注的新兴污染物)的迁移。本研究旨在研究 FT 处理对填充有天然土壤(即壤土砂和沙土,石英砂作为比较)的柱中塑料颗粒(以纳米塑料为代表)迁移性的影响。我们发现,不同类型多孔介质的 FT 处理会引起塑料颗粒不同的迁移行为。具体来说,石英砂的 FT 处理不会影响塑料颗粒的迁移性。而壤土砂和沙土的 FT 处理增加了塑料颗粒的迁移。土壤中较大孔径的增加和小土壤颗粒的崩解(脱落的土壤将作为塑料颗粒迁移的可移动载体)导致两种土壤中塑料颗粒迁移性的增强。FT 处理诱导的优先流路径的存在也导致了 FT 处理后的沙土中塑料颗粒迁移性的增强。本研究清楚地表明,FT 处理大大增强了两种天然土壤中模型塑料颗粒的迁移性。