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Q1 2025

A green method for the extraction and determination of La<sup>3+</sup> and Ce<sup>3+</sup> ions from water and copper solution based on Calix[4]resorcinarene chelation

Jing-Long Liu · Bin Xu · Shou-Dong Chen · Jie Li · Qian-Feng Zhang
10.25259/ajc_265_2025 386 Views 0 Citations
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Abstract

Green extraction and recovery of rare earth metals is an important and urgent problem for the rare earth industry. To explore a method capable of extracting and enriching rare earth elements in both aqueous and high-copper matrix solutions, a calix[4]resorcinarene chelation-cloud point extraction (CPE)-inductively coupled plasma optical emission spectrometry (ICP-OES) approach was established to achieve the extraction, enrichment, separation, and determination of rare earth elements. In this study, a methylsulfonated derivative of calix[4]resorcinarene (C4RS) was prepared, which is a polydentate ligand with four flexible methylene sulfonate groups. Through UV-vis spectroscopy, it was demonstrated that C4RS exhibits a high complexation ability towards rare earth (RE) ions. During the development of the analytical method, Triton X-114 (TX-114), a nonionic surfactant, was employed as the extractant, while water-soluble C4RS acted as the chelating agent for CPE of La3⁺ and Ce3⁺ ions. The CPE process, including experimental conditions and influencing factors for enriching La3⁺ and Ce3⁺ ions, was systematically investigated and optimized. This study found that the CPE procedure could extract La3+ and Ce3+ ions with high efficiency in water and even from copper solutions with a certain concentration. Then, the La3+ and Ce3+ ions extracted and enriched by CPE are determined by ICP-OES. The detection limits were as low as 0.0002 and 0.0003 for La3+ and Ce3+ ions, respectively, with excellent standard recovery rates and precision.

Cite this Article (APA)
Jing-Long, L., Bin, X., Shou-Dong, C., Jie, L., Qian-Feng, Z. (2025). A green method for the extraction and determination of La3+ and Ce3+ ions from water and copper solution based on Calix[4]resorcinarene chelation. Arabian Journal of Chemistry. https://doi.org/10.25259/ajc_265_2025
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Published in
ISSN 1878-5352
Quartile Q1
AMS Score 100
Field Natural Sciences
Publisher Scientific Scholar
Country 🇸🇦 Saudi Arabia
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Publication Details
Year 2025
Language English
Added 01 Aug 2026