Department of Civil and Environmental Engineering, University of South Carolina, Columbia, 300 Main Street, SC 29208, USA.
Department of Civil and Environmental Engineering, Korea Army Academy at Young-Cheon, 135-1, Changhari, Kokyungmeon, Young-cheon, Gyeongbuk 770-849, Republic of Korea.
J Hazard Mater. 2016 May 15;309:133-50. doi: 10.1016/j.jhazmat.2016.02.006. Epub 2016 Feb 3.
A pronounced increase in the use of nanotechnology has resulted in nanomaterials being released into the environment. Environmental exposure to the most common engineered nanomaterials (ENMs), such as carbon-based and metal-based nanomaterials, can occur directly via intentional injection for remediation purposes, release during the use of nanomaterial-containing consumer goods, or indirectly via different routes. Recent reviews have outlined potential risks assessments, toxicity, and life cycle analyses regarding ENM emission. In this review, inevitable release of ENMs and their environmental behaviors in aqueous porous media are discussed with an emphasis on influencing factors, including the physicochemical properties of ENMs, solution chemistry, soil hydraulic properties, and soil matrices. Major findings of laboratory column studies and numerical approaches for the transport of ENMs are addressed, and studies on the interaction between ENMs and heavy metal ions in aqueous soil environments are examined. Future research is also presented with specific research directions and outlooks.
纳米技术的广泛应用导致纳米材料被释放到环境中。环境中最常见的工程纳米材料(ENMs)的暴露,如基于碳和基于金属的纳米材料,可以通过有目的的注射进行修复来直接进行,也可以通过不同的途径在使用含纳米材料的消费品时释放。最近的综述概述了关于 ENM 排放的潜在风险评估、毒性和生命周期分析。在这篇综述中,讨论了 ENMs 的不可避免的释放及其在水多孔介质中的环境行为,重点讨论了影响因素,包括 ENMs 的物理化学性质、溶液化学、土壤水力性质和土壤基质。讨论了实验室柱研究和 ENMs 传输的数值方法的主要发现,并研究了 ENMs 和水土壤环境中重金属离子之间的相互作用。还提出了未来的研究方向和展望。