PEG比率
化学
化学工程
微塑料
动力学
降级(电信)
扩散
污染
纳米颗粒
环境科学
材料科学
环境化学
纳米技术
热力学
物理
经济
工程类
财务
生物
电信
量子力学
生态学
作者
Yifan Zhang,Jingjing Duan,Ruiqian Liu,Evangelos Petropoulos,Yanfang Feng,Lihong Xue,Linzhang Yang,Shiying He
标识
DOI:10.1016/j.jes.2023.07.025
摘要
Due to their resistance to degradation, wide distribution, easy diffusion and potential uptake by organisms, microplastics (MPs) pollution has become a major environmental concern. In this study, PEG-modified Fe3O4 magnetic nanoparticles demonstrated superior adsorption efficiency against polyethylene (PE) microspheres compared to other adsorbents (bare Fe3O4, PEI/Fe3O4 and CA/Fe3O4). The maximum adsorption capacity of PE was found to be 2203 mg/g by adsorption isotherm analysis. PEG/Fe3O4 maintained a high adsorption capacity even at low temperature (5°C, 2163 mg/g), while neutral pH was favorable for MP adsorption. The presence of anions (Cl−, SO42−, HCO3−, NO3−) and of humic acids inhibited the adsorption of MPs. It is proposed that the adsorption process was mainly driven by intermolecular hydrogen bonding. Overall, the study demonstrated that PEG/Fe3O4 can potentially be used as an efficient control against MPs, thus improving the quality of the aquatic environment and of our water resources.
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