College of Natural Resources and Environment, Northwest A&F University, Yangling, Shaanxi, 712100, China.
State Environmental Protection Key Laboratory of Water Environmental Simulation and Pollution Control, South China Institute of Environmental Sciences, MEE, Guangzhou 510655, PR China.
J Hazard Mater. 2020 Jul 5;393:122515. doi: 10.1016/j.jhazmat.2020.122515. Epub 2020 Mar 10.
Microplastics are formed by the degradation of plastic wastes under the action of physicochemical mechanisms in environment, and they are becoming a new type of pollutant that is attractings global attention. However, research on the aging characteristics and mechanism of microplastics is limited. The aging mechanism of Polystyrene (PS) with UV irradiation under different conditions (air, pure water and seawater) and the effect of aging on heavy metal adsorption were studied. The results show that PS have different characteristics with UV irradiation under different conditions, and the aging of PS is the most obvious in air. Based on the 2D-COS analysis, different aging mechanisms were identified under different aging conditions, aging sequence of aged PS functional groups in air and water were clearly definited. An isothermal adsorption model shows that aging can significantly increase the adsorption of heavy metals by PS. The adsorption of heavy metals is also affected by different aging methods. Over all, a 2D-COS analysis was an effective method for understanding the aging process of PS. These results further clarify the aging mechanism of PS, and provides a theoretical basis for the assessment of environmental behavior and ecological risk when microplastics and heavy metals coexist.
微塑料是在环境理化机制作用下,由塑料废弃物降解形成的,它们正成为一种新型的全球关注的污染物。然而,微塑料老化特性和机制的研究还很有限。本研究以聚苯乙烯(PS)为研究对象,研究了其在不同条件(空气、纯水和海水)下经紫外光辐照老化的机制以及老化对重金属吸附的影响。结果表明,PS 在不同条件下经紫外光辐照具有不同的特性,在空气中老化最明显。基于 2D-COS 分析,确定了不同老化条件下的不同老化机制,明确了空气和水中老化 PS 官能团的老化顺序。等温吸附模型表明,老化可显著增加 PS 对重金属的吸附。重金属的吸附也受到不同老化方法的影响。总的来说,2D-COS 分析是一种理解 PS 老化过程的有效方法。这些结果进一步阐明了 PS 的老化机制,为评估微塑料和重金属共存时的环境行为和生态风险提供了理论依据。