Effect of particle size on the colonization of biofilms and the potential of biofilm-covered microplastics as metal carriers

生物膜 微塑料 吸附 环境化学 化学 金属 粒径 粒子(生态学) 殖民地化 微生物学 细菌 生物 生态学 有机化学 遗传学 物理化学
作者
Wu Chen,Kazuya Tanaka,Yukinori Tani,Xiangyang Bi,Jinling Liu,Qianqian Yu
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:821: 153265-153265 被引量:76
标识
DOI:10.1016/j.scitotenv.2022.153265
摘要

Upon release into the aquatic environment, the surface of microplastics (MPs) can be readily colonized by biofilms, which may enhance the adsorption of contaminants. In this study, industrial-grade polystyrene (PS) of about 4 mm in size (MP4000-1), food-grade PS of about 4 mm in size (MP4000-2), and Powder PS of about 75 μm in size (MP75) were co-cultured with a model freshwater fungus, namely Acremonium strictum strain KR21-2, for seven days to form biofilms on their surface. We also determined the changes in surface physicochemical properties of the biofilm-covered MPs (BMPs) and the heavy metal adsorption capacity of the original MPs and BMPs. The results revealed that the biofilms improve the adsorption of heavy metals on MPs, and the particle size of MPs plays a crucial role in biofilm colonization and adsorption of heavy metals by BMPs. MP75 can carry more biofilm on its surface than that of the two MP4000s and form heteroaggregates with biofilms. In addition, there were more functional groups on the surface of BMP75 than on the surface of the two BMP4000s, which could promote the electrostatic interaction and chemical association of heavy metals. Moreover, BMP75 exhibited a higher capacity to adsorb Cu and reduce Cr (VI), which may be related to the functional groups in its biofilm. Overall, this study showed that after biofilms colonization, BMPs of smaller size have more significant potential as a metal vector, and the particle size deserves more scientific attention during the risk assessment.
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