Joo Sung Hee, Liang Yejin, Kim Minbeom, Byun Jaehyun, Choi Heechul
School of Earth Science and Environmental Engineering, Gwangju Institute of Science and Technology (GIST), 123 Cheomdangwagi-ro, Oryong-dong, Republic of Korea.
Environ Chall (Amst). 2021 Apr;3:100042. doi: 10.1016/j.envc.2021.100042. Epub 2021 Feb 9.
Plastic pollution has been a significant and widespread global issue, and the recent COVID-19 pandemic has been attributed to its worsening effect as plastics have been contaminated with the deadly infectious virus. Microplastics (MPs) may have played a role as a vector that carries hazardous microbes such as emerging bacterial threats (i.e. antibiotic resistant bacteria) and deadly viruses (e.g., coronavirus); this causes great concern over microplastics contaminated with emerging contaminants. Mitigation and treatment of MPs are challenging because of a range of factors including but not limited to physicochemical properties and composition of MPs and pH and salinity of the solution. Despite the heterogeneous nature of aquatic systems, research has overlooked interactions between contaminants and MPs under environmental conditions, degradation pathways of MPs with adsorbed contaminants, and, especially, the role of adsorbed contaminants in the efficiency of MP treatment through membrane filtration, in comparison with other treatment methods. This review aims to (1) analyze an assortment of factors that could influence the removal of MPs and mechanisms of contaminant adsorption on MPs, (2) identify mechanisms influencing membrane filtration of MPs, (3) examine the fate and transport of MPs with adsorbed contaminants, (4) evaluate membrane filtration of contaminant-adsorbing MPs in comparison to other treatment methods, and (5) draw conclusions and the future outlook based on a literature analysis.
塑料污染一直是一个重大且广泛存在的全球性问题,近期的新冠疫情被认为因塑料被这种致命的传染性病毒污染而使其影响恶化。微塑料(MPs)可能充当了携带危险微生物的载体,如新出现的细菌威胁(即抗生素耐药菌)和致命病毒(如冠状病毒);这引发了人们对被新出现污染物污染的微塑料的极大关注。由于一系列因素,包括但不限于微塑料的物理化学性质和组成以及溶液的pH值和盐度,微塑料的缓解和处理具有挑战性。尽管水生系统具有异质性,但与其他处理方法相比,研究忽视了环境条件下污染物与微塑料之间的相互作用、吸附有污染物的微塑料的降解途径,尤其是吸附的污染物在通过膜过滤处理微塑料效率方面的作用。本综述旨在:(1)分析一系列可能影响微塑料去除及污染物在微塑料上吸附机制的因素;(2)确定影响微塑料膜过滤的机制;(3)研究吸附有污染物的微塑料的归宿和迁移;(4)与其他处理方法相比,评估吸附有污染物的微塑料的膜过滤情况;(5)基于文献分析得出结论并展望未来。