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Efficient adsorption of BPA and Pb2+ by sulfhydryl-rich β-cyclodextrin polymers

SEPARATION AND PURIFICATION TECHNOLOGY [2023]
Junhao Li, Jiawei Wang, Xinyu Yuan, Zhikun Wang, Shuangqing Sun, Qiang Lyu, Songqing Hu
ABSTRACT

At present, endocrine-disrupting chemicals (EDCs) and heavy metals (HMs) are increasingly polluting water. In this work, we prepared a sulfhydryl-rich β-cyclodextrin polymer (SH-CDP) for the adsorption of Pb 2+ and bisphenol A (BPA), as the representatives of HMs and EDCs, respectively. SH-CDP have excellent adsorption performance with theoretical maximum adsorption capacity of 604.65 mg/g and 287.88 mg/g for Pb 2+ and BPA, respectively. The adsorption process of Pb 2+ by SH-CDP reaches equilibrium quickly within 60 s because of chelation between Pb 2+ and sulfhydryl group, suggesting an ultra-fast adsorption rate. Since the adsorption sites of Pb 2+ and BPA by SH-CDP are independent, the adsorption performance is still favorable under the coexistence of Pb 2+ and BPA. Furthermore, SH-CDP maintains stable adsorption performance after five consecutive cycles. These results demonstrate that SH-CDP is a potential material capable of effectively treating HMs and EDCs in wastewater.

MATERIALS

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