Insight into the adsorption behaviors and bioaccessibility of three altered microplastics through three types of advanced oxidation processes

微塑料 吸附 环境化学 过氧乙酸 吸附 化学工程 污染 污染 化学 聚乙烯 过氧化氢 生态学 生物 工程类 有机化学
作者
Xiangcheng Kong,Aoyu Zhou,Xianxian Chen,Xinying Cheng,Yuqi Lai,Chao Li,Qiuyi Ji,Qingsong Ji,Jijie Kong,Yuan Ding,Feng Zhu,Huan He
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:917: 170420-170420 被引量:9
标识
DOI:10.1016/j.scitotenv.2024.170420
摘要

Advanced oxidation processes (AOPs) can significantly alter the structural properties, environmental behaviors and human exposure level of microplastics in aquatic environments. Three typical microplastics (Polyethylene (PE), polypropylene (PP), and polystyrene (PS)) and three AOPs (Heat-K2S2O8 (PDS), UV-H2O2, UV-peracetic acid (PAA)) were adopted to simulate the process when microplastics exposed to the sewage disposal system. 2-Nitrofluorene (2-NFlu) adsorption experiments found the equilibrium time decreased to 24 hours and the capacity increased up to 610 μg g−1, which means the adsorption efficiency has been greatly improved. The fitting results indicate the adsorption mechanism shifted from the partition dominant on pristine microplastic to the physical adsorption (pore filling) dominant. The alteration of specific surface area (21 to 152 m2 g−1), pore volume (0.003 to 0.148 cm3 g−1) and the particle size (123 to 16 μm) of microplastics after AOPs are implying the improvement for pore filling. Besides, the investigation of bioaccessibility is more complex, AOPs alter microplastic with more oxygen-containing functional groups and lower hydrophobicity detected by XPS and water contact angle, those modifications have increased the sorption concentration, especially in the human intestinal tract. Therefore, this indicates the actual exposure of organic compounds loaded in microplastic may be higher than in the pristine microplastic. This study can help to assess the human health risk of microplastic pollution in actual environments.
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