School of Environment, Northeast Normal University, Jilin, China; College of Resource and Environmental Engineering, Jilin Institute of Chemical Technology, Jilin, China.
School of Environment, Northeast Normal University, Jilin, China.
Chemosphere. 2020 Jun;248:126064. doi: 10.1016/j.chemosphere.2020.126064. Epub 2020 Feb 1.
Microplastics (MPs), the appearance of which has gained considerable interest, can act as vectors to transport other pollutants such as metals into organisms. In this study, the sorption isotherms of three model heavy metals (i.e., Cu, Cd, and Pb) on four virgin plastic particles including chlorinated polyethylene (CPE), PVC, and two polyethylene plastic particles (i.e., LPE and HPE). HPE and LPE were investigated. The results showed that MPs can load high amounts of Pb, Cu and Cd. The sorption affinity of the three metals to the model MPs followed the sequence of CPE > PVC > HPE > LPE. The adsorption process was affected by the chemical structure and electronegativity of the sorbents, and seemed irrelevant to the crystallinity of MPs. For the three metals, Pb exhibited significantly stronger sorption than did Cu and Cd due to the strong electrostatic interaction. Moreover, pH can significantly affect the sorption of metals on MPs, but ionic strength exerted a relatively slight effect on this process. In brief, the electrostatic interaction played an important role in the sorption of Pb to model MPs. For Cd and Cu, sorption was determined by electrostatic interaction together with surface complexation onto the plastic surface. This study indicates that depending on the surface physicochemical properties of MPs the adsorption behavior can vary significantly. Therefore, the adsorption process of metals on MPs should be readily affected by other environmental mediums in the environment. The study provides additional insight into the behavior of MPs as a vector of metals.
微塑料(MPs)的出现引起了广泛关注,它们可以作为载体将其他污染物(如金属)输送到生物体中。在本研究中,研究了四种原始塑料颗粒(即氯化聚乙烯(CPE)、聚氯乙烯(PVC)和两种聚乙烯塑料颗粒(即低密度聚乙烯(LPE)和高密度聚乙烯(HPE))对三种模型重金属(Cu、Cd 和 Pb)的吸附等温线。结果表明,MPs 可以负载大量的 Pb、Cu 和 Cd。三种金属对模型 MPs 的吸附亲和力顺序为 CPE>PVC>HPE>LPE。吸附过程受吸附剂的化学结构和电负性的影响,而与 MPs 的结晶度无关。对于三种金属,Pb 由于强静电相互作用表现出比 Cu 和 Cd 更强的吸附能力。此外,pH 值可以显著影响金属在 MPs 上的吸附,但离子强度对该过程的影响相对较小。总之,静电相互作用在 Pb 对模型 MPs 的吸附中起重要作用。对于 Cd 和 Cu,吸附由静电相互作用和塑料表面的表面络合共同决定。本研究表明,取决于 MPs 的表面物理化学性质,吸附行为可能会有很大差异。因此,金属在 MPs 上的吸附过程很容易受到环境中其他环境介质的影响。该研究为 MPs 作为金属载体的行为提供了更多的认识。