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New insights into adsorption mechanism of pristine and weathered polyamide microplastics towards hydrophilic organic compounds

Environmental Pollution 2022 40 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 45 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Lezu Shen, Lezu Shen, Yanhua Wang, Yanhua Wang, Ruihan Liu, Lezu Shen, Lezu Shen, Ruihan Liu, Yanhua Wang, Yanhua Wang, Yanhua Wang, Yanhua Wang, Yanhua Wang, Yanhua Wang, Yanhua Wang, Yanhua Wang, Yanhua Wang, Yanni Yang, Yanhua Wang, Bei Zhang, Yanhua Wang, Yanhua Wang, Yanhua Wang, Yanhua Wang, Yanhua Wang, Yanhua Wang, Baoshan Xing Yanhua Wang, Yanhua Wang, Baoshan Xing Baoshan Xing Baoshan Xing Baoshan Xing Baoshan Xing Baoshan Xing Baoshan Xing Zhibao Dong, Zhibao Dong, Zhibao Dong, Zhibao Dong, Yanni Yang, Yanni Yang, Ruihan Liu, Ruihan Liu, Ruihan Liu, Zhibao Dong, Zhibao Dong, Zhibao Dong, Zhibao Dong, Yanhua Wang, Baoshan Xing Zhibao Dong, Yanni Yang, Yanni Yang, Zhibao Dong, Lezu Shen, Lezu Shen, Lezu Shen, Baoshan Xing Lezu Shen, Yanhua Wang, Baoshan Xing Baoshan Xing Baoshan Xing Baoshan Xing Baoshan Xing Baoshan Xing Baoshan Xing Baoshan Xing Baoshan Xing Baoshan Xing Yanhua Wang, Yanhua Wang, Zhibao Dong, Ruihan Liu, Bei Zhang, Zhibao Dong, Chanjuan Gao, Baoshan Xing Baoshan Xing Baoshan Xing Baoshan Xing Baoshan Xing Baoshan Xing Zhibao Dong, Baoshan Xing Zhibao Dong, Baoshan Xing Baoshan Xing Yanhua Wang, Baoshan Xing Baoshan Xing Baoshan Xing Baoshan Xing Chanjuan Gao, Baoshan Xing Lezu Shen, Baoshan Xing Baoshan Xing Baoshan Xing Baoshan Xing Chanjuan Gao, Chanjuan Gao, Yanhua Wang, Lezu Shen, Chanjuan Gao, Zhibao Dong, Baoshan Xing Baoshan Xing Baoshan Xing Baoshan Xing Chanjuan Gao, Chanjuan Gao, Baoshan Xing Baoshan Xing Baoshan Xing Baoshan Xing Baoshan Xing Baoshan Xing Baoshan Xing Baoshan Xing Baoshan Xing Baoshan Xing Baoshan Xing Baoshan Xing Baoshan Xing Baoshan Xing Baoshan Xing Baoshan Xing Baoshan Xing Baoshan Xing Yanhua Wang, Baoshan Xing Baoshan Xing

Summary

Adsorption of four hydrophilic organic compounds including antibiotics sulfamethoxazole and ciprofloxacin onto pristine and weathered polyamide microplastics was studied, finding that weathering introduced oxygen-containing surface groups that significantly altered adsorption capacity and mechanisms. The results improve predictions of how microplastics transport co-occurring pollutants in aquatic environments.

Polymers

The widespread coexistence of hydrophilic organic compounds and microplastics (MPs) in the environment has greatly increased their associated environmental problems. To evaluate the potential carrier effect of oxygen-containing MPs on coexisting pollutants, adsorption behaviors of four hydrophilic organic compounds (benzoic acid, sulfamethoxazole, sulfamerazine and ciprofloxacin) on MPs (pristine and weathered polyamide (PA)) were studied in the aquatic environment. The results showed that the surface morphology, size, oxygen content, molecular structure, surface charge and crystallinity of PA were changed after weathering, and the weathering degree of PA treated with heat-activated potassium persulfate was the highest. The main adsorption mechanisms included hydrogen bonding, hydrophobic interaction, charge-assisted hydrogen bonding, and electrostatic interaction. Hydrogen bonding and hydrophobic interaction contributed to the adsorption, while electrostatic interaction weakened the adsorption under the specific pH conditions. The formation of charge-assisted hydrogen bonding (CAHB) was also verified through pH influence experiments, and this force can overcome the electrostatic repulsion. The high adsorption of KPA (PA weathered by KSO) under alkaline conditions was well explained by the formation of homonuclear CAHB due to the increase of oxygen-containing functional groups compared to the other three PA. Additionally, weathering did not always enhance the adsorption of hydrophilic organic compounds on PA, which was related to the changes in surface charge, crystallinity and hydrophilicity of PA. Overall, the physical and chemical properties (e.g., specific surface area, oxygen content, molecular structure) of PA after weathering and its trend of adsorption were different from other oxygen-free MPs in this study. This work can provide basic data for environmental risk of MPs and contribute to clarify and understand the processes of oxygenated MPs in the aquatic environment.

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