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冻融循环作用下胶体的迁移与运移:对冶炼场地重金属(类金属)迁移的洞察

Colloid mobilization and transport in response to freeze-thaw cycles: Insights into the heavy metal(loid)s migration at a smelting site.

作者信息

Tang Lu, Liu Jie, Xiang Chao, Gao Wenyan, Chen Zhengshan, Jiang Jun, Guo Junkang, Xue Shengguo

机构信息

School of Metallurgy and Environment, Central South University, Hunan 410083, PR China.

School of Environmental Science and Engineering, Shaanxi University of Science & Technology, Xi'an 710021, PR China.

出版信息

J Hazard Mater. 2024 Dec 5;480:135959. doi: 10.1016/j.jhazmat.2024.135959. Epub 2024 Sep 26.

Abstract

Smelting sites often exhibit significant heavy metal(loid)s (HMs) contamination in the soil and groundwater, which are inevitably subjected to environmental disturbances. However, there is limited information available regarding the migration behaviors of HMs in a disturbed scenario. Thus, this work explored the migration of HMs-bearing colloids in response to freeze-thaw treatments by laboratory simulation and pore-scale study. Ultrafiltration results of soil effluents revealed that 61.5 %, 47.6 %, 68.0 %, and 59.2 % of Zn, Cd, Pb, and As were present in colloidal phase, and co-transported during treatments. Nanoparticle tracking analysis (NTA) further confirmed that freeze-thaw cycles were conducive to the generation of colloidal particles and showed the heteroagglomeration among different particles. Pore-network model (PNM) was used to quantify the soil macropore characteristics (macropore diameter, macropore number, coordination number, and Euler value) after treatments. It is evident that freeze-thaw cycles induced the formation of larger macropores while simultaneously enhancing macropore connectivity, thereby establishing an optimal pathway for colloid migration. These findings underscored the importance of environmental disturbances as a trigger for the release and migration of HMs in the smelting site, offering valuable insights for controlling HMs pollution. ENVIRONMENTAL IMPLICATION: The contaminated site has been subjected to prolonged environmental disturbances, causing the exacerbation of pollutants leaching and frequent occurrences of unstable pollution situations. This work explored the migration of HMs-bearing colloids in response to freeze-thaw treatments by laboratory simulation and pore-scale study. The distinct effects of freeze-thaw treatment on colloidal particle number concentration and macropore characteristics may explain the generation and migration of colloid-associated HMs driven by environmental disturbances. This work revealed the underlying mechanisms driving the redistribution of HMs under freeze-thaw cycles, offering valuable insights for risk assessment of soil and groundwater associated with HMs migration.

摘要

冶炼场地的土壤和地下水中常常存在显著的重金属(类金属)(HMs)污染,这些区域不可避免地会受到环境扰动。然而,关于HMs在受扰动情景下的迁移行为,现有信息有限。因此,本研究通过实验室模拟和孔隙尺度研究,探讨了含HMs胶体在冻融处理下的迁移情况。土壤流出液的超滤结果显示,锌、镉、铅和砷分别有61.5%、47.6%、68.0%和59.2%以胶体形式存在,并在处理过程中共同迁移。纳米颗粒跟踪分析(NTA)进一步证实,冻融循环有利于胶体颗粒的生成,并显示出不同颗粒之间的异质团聚。孔隙网络模型(PNM)用于量化处理后土壤大孔隙特征(大孔隙直径、大孔隙数量、配位数和欧拉值)。显然,冻融循环诱导形成了更大的大孔隙,同时增强了大孔隙连通性,从而为胶体迁移建立了最佳路径。这些发现强调了环境扰动作为冶炼场地HMs释放和迁移触发因素的重要性,为控制HMs污染提供了有价值的见解。环境意义:受污染场地长期受到环境扰动,导致污染物淋溶加剧,不稳定污染情况频繁发生。本研究通过实验室模拟和孔隙尺度研究,探讨了含HMs胶体在冻融处理下的迁移情况。冻融处理对胶体颗粒数浓度和大孔隙特征的显著影响,可能解释了环境扰动驱动的与胶体相关的HMs的生成和迁移。本研究揭示了冻融循环下HMs重新分布的潜在机制,为与HMs迁移相关的土壤和地下水风险评估提供了有价值的见解。

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