Adsorption behaviors of perfluorooctanoic acid on aged microplastics

Author:

Ning Zigong12ORCID,Zhou Shuang3,Yang Ying1,Li Pengxiang45,Zhao Zilong1,Zhang Wei1,Lu Lu1,Ren Nanqi1

Affiliation:

1. School of Civil and Environmental Engineering Harbin Institute of Technology Shenzhen China

2. Zhuhai Modern Agriculture Development Center Zhuhai China

3. Shenzhen Honglue Research Institute of Innovation Management Shenzhen China

4. CCTEG Beijing Academy of Land Renovation and Ecological Restoration Technology Co. Ltd Beijing China

5. Research Center of Land Renovation and Ecological Restoration Engineering in the Coal Industry Beijing China

Abstract

AbstractThe presence of perfluoroalkyl substances (PFAS) in the environment poses a significant threat to ecological safety and environmental health. Widespread microplastics (MPs) have been recognized as vectors for emerging contaminants due to human activities. However, the adsorption behaviors of PFAS on MPs, especially on aged MPs, have not been extensively investigated. This study aimed to investigate the adsorption behaviors of perfluorooctanoic acid (PFOA) on aged MPs (polystyrene, polyethylene, and polyethylene terephthalate) treated with UV irradiation and persulfate oxidation under salinity and dissolve organic matter (DOM) condition. Carbonyl index values of MPs increased after the aged treatment, indicating the production of oxygen‐containing groups. The PFOA adsorption on aged MPs was impacted by the co‐existence of Na+ ions and DOM. As PFOA adsorption onto aged MPs was mainly controlled by hydrophobic interaction, the electrostatic interaction also made a contribution, but there was no significant change in PFOA adsorption behavior between the pristine and aged MPs. While these findings provide insight into PFAS adsorption on aged MPs, further research is necessary to account for the complexity of the real environment.Practitioner Points Adsorption behaviors of perfluorooctanoic acid (PFOA) on aged microplastics were investigated. Hydrophobic interaction mainly controlled PFOA adsorption on aged microplastics (MPs). Co‐existence dissolve organic matter and salinity influenced PFOA adsorption behaviors on aged MPs.

Funder

Shenzhen Science and Technology Innovation Program

Publisher

Wiley

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