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通过在基质上构建孔结构,制备壳聚糖介孔膜/埃洛石复合膜以从稀土离子溶液中高效选择性吸附 Al(III)。

Preparation of chitosan mesoporous membrane/halloysite composite for efficiently selective adsorption of Al(III) from rare earth ions solution through constructing pore structure on substrate.

机构信息

School of Resources and Architectural Engineering, GanNan University of Science and Technology, Ganzhou 341000, China; Key Laboratory of Mine Geological Disaster Prevention and Control and Ecological Restoration, Ganzhou 341000, China.

Jiangxi Key Laboratory of Mining Engineering, Ganzhou 341000, China; School of Resource and Environmental Engineering, Jiangxi University of Science and Technology, Ganzhou 341000, China.

出版信息

Int J Biol Macromol. 2024 Jan;256(Pt 1):128351. doi: 10.1016/j.ijbiomac.2023.128351. Epub 2023 Nov 22.

DOI:10.1016/j.ijbiomac.2023.128351
PMID:37995782
Abstract

The removal of impurity Al(III) from rare earth ion solution by selective adsorption method was one of the challenging tasks. Herein, calcination and acid dissolution treatment were used to construct the pore structure for the halloysite substrate (Hal-650-H) and provide conditions for the formation of the chitosan mesoporous membrane to prepare composite (Hal-H-2CS). The selective adsorption properties and mechanism of the Hal-H-2CS for Al(III) in the rare earth ion solution were studied. The results showed that the formation of mesoporous structures for chitosan provided abundant sites for the adsorption of Al(III). Hal-H-2CS showed remarkable selective adsorption properties for Al(III) in a wide pH range and the binary mixtures with high content of Al(III) or La(III). The maximum adsorption capacity of Al(III) was 106 mg/g, while the adsorption capacity of La(III) was only 1.41 mg/g at pH 4.0. In addition, the Hal-H-2CS exhibited excellent regeneration and structural stability. The remarkable selective properties of Hal-H-2CS was achieved by the synergistic effect between chitosan mesoporous membrane and Hal-650-H, the main adsorption sites were the OH, NH, CONH of chitosan and the oxygen sites of the Hal-650-H. This work provides a new strategy for the design and preparation of outstanding selective adsorbent for Al(III).

摘要

用选择性吸附法从稀土离子溶液中去除杂质 Al(III)是一项具有挑战性的任务。在此,煅烧和酸浸处理用于构建多孔 Halloysite 基体制备(Hal-650-H)并为壳聚糖介孔膜的形成提供条件,从而制备复合(Hal-H-2CS)。研究了 Hal-H-2CS 在稀土离子溶液中对 Al(III)的选择性吸附性能和机制。结果表明,壳聚糖介孔结构的形成提供了丰富的 Al(III)吸附位点。Hal-H-2CS 在较宽的 pH 范围内和高含量 Al(III)或 La(III)的二元混合物中表现出显著的选择性吸附性能。在 pH 4.0 时,Al(III)的最大吸附容量为 106mg/g,而 La(III)的吸附容量仅为 1.41mg/g。此外,Hal-H-2CS 表现出优异的再生和结构稳定性。Hal-H-2CS 的显著选择性是壳聚糖介孔膜和 Hal-650-H 之间协同作用的结果,主要吸附位点是壳聚糖的 OH、NH、CONH 和 Hal-650-H 的氧位。这项工作为设计和制备出色的 Al(III)选择性吸附剂提供了新策略。

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