College of Marine Ecology and Environment, Shanghai Ocean University, Shanghai 201306, PR China.
Institute of Marine Sciences and Technology, Shandong University, Qingdao 266237, PR China.
Sci Total Environ. 2019 Dec 1;694:133643. doi: 10.1016/j.scitotenv.2019.133643. Epub 2019 Jul 27.
Plastic debris becomes currently a ubiquitous environmental pollutant and is susceptible to contamination by many other pollutants, including aqueous metals and organic matter. This review summarizes the effects of environmental factors on the properties and sorption behavior of microplastics, presents a further discussion on the fate of microplastics adsorption on contaminants, and critically discusses the mechanism of sorption behaviors between micro/nanoplastics and normal contaminants. Previous references indicated that the hydrophobicity and particle sizes of microplastics were the dominant influence factors for virgin plastic debris adsorption, whereas for aged microplastics, hydrogen bonding, hydrophilicity and increasing specific surface ratio affected the adsorption behavior. The effects of pH and salinity always influence the sorption conditions by changing the charge state of microplastics and contaminants and causing competing adsorption. In addition, the existence of microplastics affects biotoxicity, increases the dissolved organic matter in the environment, and influences carbon cycling. The knowledge is fundamental to the assessment of potential risks posed by microplastics to organisms from human beings to the entire environment.
塑料碎片目前已成为一种无处不在的环境污染物,容易受到许多其他污染物的污染,包括水金属和有机物。本综述总结了环境因素对微塑料性质和吸附行为的影响,进一步讨论了微塑料对污染物吸附的命运,并批判性地讨论了微/纳米塑料与常规污染物之间的吸附行为机制。以前的参考文献表明,微塑料的疏水性和粒径是原生塑料碎片吸附的主要影响因素,而对于老化的微塑料,氢键、亲水性和增加的比表面积比影响吸附行为。pH 值和盐度的影响通过改变微塑料和污染物的荷电状态并引起竞争吸附来影响吸附条件。此外,微塑料的存在会影响生物毒性,增加环境中溶解的有机物,并影响碳循环。这些知识对于评估微塑料对从人类到整个环境的生物体造成的潜在风险是基础。