Synthesis and characterization of Cu2O@Cu/Al-CLDH for efficient adsorption of iodide anions in aqueous solutions

A HKUST-1 derivative composite based on LDH was synthesized to efficiently adsorb iodide anions in aqueous solutions. Specifically, Cu/Al-LDH, HKUST-1, HKUST-1@Cu/Al-LDH, Cu/Al-CLDH, Cu-C and Cu 2 O@Cu/Al-CLDH were synthesized and characterized. HKUST-1@Cu/Al-LDH kept the desirable characteristics o...

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Veröffentlicht in:Journal of radioanalytical and nuclear chemistry 2023-07, Vol.332 (7), p.2793-2805
Hauptverfasser: Gong, Chun-Hui, Li, Zhi-Ying, Chen, Kai-Wei, Gu, Ao-Tian, Wang, Peng, Yang, Yi
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Sprache:eng
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Zusammenfassung:A HKUST-1 derivative composite based on LDH was synthesized to efficiently adsorb iodide anions in aqueous solutions. Specifically, Cu/Al-LDH, HKUST-1, HKUST-1@Cu/Al-LDH, Cu/Al-CLDH, Cu-C and Cu 2 O@Cu/Al-CLDH were synthesized and characterized. HKUST-1@Cu/Al-LDH kept the desirable characteristics of both Cu/Al-LDH and HKUST-1. Cu 2 O@Cu/Al-CLDH maintained the morphology of HKUST-1@Cu/Al-LDH, with its iodine anions absorption mechanism being chemical adsorption. Cu 2 O@Cu/Al-CLDH exhibited a significantly higher adsorption capacity than previously reported Cu-based adsorbents, with an adsorption capacity of 240.7 mg g −1 at pH 3, taking about 240 min to reach adsorption equilibrium. Thus, Cu 2 O@Cu/Al-CLDH is a promising adsorbent for removing iodide anions from aqueous solutions.
ISSN:0236-5731
1588-2780
DOI:10.1007/s10967-023-08943-z