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Investigation of interfacial adsorption between microplastics and methylparaben in aqueous solution

Environmental Geochemistry and Health 2022 6 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.
Ziwei Chen, Ziwei Chen, Bingyu Chen, Bingyu Chen, Ying Qin, Yuan Liu Yuan Liu Ziwei Chen, Yuan Liu Yuan Liu Zhimin Wang, Yuan Liu Ziwei Chen, Yuan Liu Ziwei Chen, Meiyu Zhuang, Yuan Liu Meiyu Zhuang, Shuguang Zhu, Yuan Liu Yuan Liu Yuan Liu Ziwei Chen, Yuan Liu Kaifa Zhu, Kaifa Zhu, Xinrui Shi, Shuguang Zhu, Ziwei Chen, Ziwei Chen, Shuguang Zhu, Yingnan Shi, Yingnan Shi, Ying Qin, Ying Qin, Shuguang Zhu, Shuguang Zhu, Tao Yu, Yuan Liu

Summary

Researchers investigated the adsorption of methylparaben — a common preservative — onto polystyrene, polyethylene, PET, and PVC microplastics in aqueous solution, finding that adsorption capacity varied by polymer type and was influenced by pH and ionic strength, with implications for paraben transport in aquatic environments.

Microplastics and parabens are considered to be a global contaminants, especially in the aquatic ecosystem. The interfacial interaction between four types of microplastics including polystyrene, polyethylene, polyethylene terephthalate, and polyvinyl chloride, and methylparaben were investigated in this study. The results showed that molecular layer dominates the adsorption, with the rate significantly affected by both internal diffusion and external diffusion. Among the four types, polystyrene and polyvinyl chloride showed the smallest and biggest adsorption capability, with the values were 0.656 and 1.269 mg g, respectively. For the adsorption capability, smaller particle size and higher pH value possessed positive effects. However, the existence of metal ions could inhibit the adsorption process, except for a weak promotion at low salinity. Physical adsorption effects, such as electrostatic interaction, hydrogen bond formation, and covalent bond formation, had been identified that dominated the adsorption. This finding could be served as a speculative foundation for the further study of the toxicity, migration, and ecological risk assessment of microplastics in aquatic ecosystem.

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