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Selective Adsorption of Magnesium Using Lithium Carboxylate-Based Covalent Organic Frameworks

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NIAID Data Ecosystem2026-05-02 收录
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https://figshare.com/articles/dataset/Selective_Adsorption_of_Magnesium_Using_Lithium_Carboxylate-Based_Covalent_Organic_Frameworks/28548583
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Magnesium and lithium exhibit similar behaviors in aqueous solutions, making their separation from each other in saltlake brine challenging. Here, we report the design and synthesis of four lithium carboxylate-based covalent organic frameworks (COFs), ATSA-1 through ATSA-4, that selectively adsorb Mg2+ ions over Li+. Adsorption performance was investigated under varying initial Mg2+ concentrations, adsorbent dosages, and contact times. Among the COFs, ATSA-4 demonstrated the highest Mg2+ adsorption capacity, reaching 19 mg g–1. Adsorption data aligned with the Langmuir isotherm model, while kinetic analysis indicated a pseudo-second-order model best described Mg2+ uptake. Regeneration tests revealed that hydrochloric acid at pH 3 efficiently desorbed Mg2+, enabling the COF reusability. Additionally, a COF-supported ultrafiltration bed yielded a Mg2+ separation flux of 19 g h–1 m–2. The ATSA-COF series further displayed a high selectivity for Mg2+ in mixed Mg2+/Li+ solutions.
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2025-03-06
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