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The impact of chlorination on the tetracycline sorption behavior of microplastics in aqueous solution

The Science of The Total Environment 2022 20 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 40 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Tianwei Hao, Manhong Miao, Tianwei Hao, Tianwei Hao, Xuhua Cheng, Manhong Miao, Xuhua Cheng, Yao Li, Yuanyuan Dou, Yuanyuan Dou, Xuhua Cheng, Xuhua Cheng, Manhong Miao, Manhong Miao, Yuanyuan Dou, Yuanyuan Dou, Xuhua Cheng, Xuhua Cheng, Xuhua Cheng, Tong Wang, Yuanyuan Dou, Xuhua Cheng, Yao Li, Manhong Miao, Manhong Miao, Yuanyuan Dou, Manhong Miao, Manhong Miao, Yao Li, Xuhua Cheng, Qilin Wang Manhong Miao, Yuanyuan Dou, Manhong Miao, Manhong Miao, Tong Wang, Xuhua Cheng, Xuhua Cheng, Manhong Miao, Xuhua Cheng, Yuanyuan Dou, Manhong Miao, Qilin Wang Qilin Wang Yinqing Zhang, Yao Li, Yao Li, Manhong Miao, Manhong Miao, Yuanyuan Dou, Tianwei Hao, Tong Wang, Tong Wang, Manhong Miao, Yuanyuan Dou, Xuhua Cheng, Tianwei Hao, Xuhua Cheng, Xuhua Cheng, Qilin Wang Yuanyuan Dou, Yuanyuan Dou, Manhong Miao, Qilin Wang Xuhua Cheng, Yao Li, Yao Li, Yinqing Zhang, Yao Li, Yao Li, Yuanyuan Dou, Qilin Wang Yinqing Zhang, Yao Li, Yuanyuan Dou, Yao Li, Yao Li, Qilin Wang Yao Li, Xiaoyu Ning, Xiaoyu Ning, Yao Li, Yao Li, Yao Li, Yao Li, Xiaoyu Ning, Xiaoyu Ning, Qilin Wang Qilin Wang Qilin Wang Yao Li, Xiaoyu Ning, Qilin Wang Xiaoyu Ning, Qilin Wang Qilin Wang Qilin Wang Qilin Wang

Summary

Researchers found that chlorination, a common disinfection step in wastewater treatment, alters the surface chemistry of microplastics and changes their capacity to adsorb tetracycline antibiotics, with chlorinated microplastics showing modified sorption behavior that affects their role as antibiotic carriers.

Polymers
Study Type Environmental

Considering the large volumes of treated water and incomplete elimination of pollutants, wastewater treatment plants (WWTPs) remain a considerable source of microplastics (MPs). Chlorine, the most frequently used disinfectant in WWTPs, has a strong oxidizing impact on MPs. However, little is documented, to date, about the impact of chlorination on the transformation of MPs and the subsequent environmental behaviors of the chlorinated MPs when released into the aquatic environment. This study explored the response of the physicochemical properties of specific thermoplastics, namely polyurethane (TPU) MPs and polystyrene (PS) MPs, to chlorination and their emerging pollutant [tetracycline (TC)] adsorption behavior in aqueous solution. The results indicated that the O/C ratio of the MP surface did not significantly change, and that there were increases in the O-containing functional groups of the TPU and PS MPs, after chlorination. The surface area of the chlorinated TPU MPs increased by 45 %, and that of the chlorinated PS increased by 21 %, compared with the pristine ones, which contributed to the TC adsorption. The adsorption isotherm fitting parameters suggested that the chlorinated TPU fitted the multilayer adsorption, and the chlorinated PS was inclined to the monolayer adsorption. The relative abundance of the O-containing functional groups, on the TPU surface, led to the release of CHCl molecules, and the clear surface irregularities and fissures occurred after chlorine treatment. No fissures were found on the surface of the chlorinated PS MPs. The hydrophobicity and electrostatic adsorption were proved to be the major impacts on the TC adsorption of the chlorinated MPs, and the subsequently formed hydrogen bonds led to the stronger adsorption capacity of the chlorinated TPU than the chlorinated PS MPs.

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