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多孔 La/Bi 羟基复盐上的双金属捕获位点对磷酸盐的高效吸附:多活性中心和优异的选择性。

Bimetallic capture sites on porous La/Bi hydroxyl double salts for efficient phosphate adsorption: Multiple active centers and excellent selective properties.

机构信息

School of Environment and Civil Engineering, Dongguan University of Technology, Dongguan 523106, Guangdong, China; Key Laboratory of Groundwater Resources and Environment (Jilin University), Ministry of Education, Jilin University, Changchun 130021, Jilin, China.

School of Environment and Civil Engineering, Dongguan University of Technology, Dongguan 523106, Guangdong, China.

出版信息

Chemosphere. 2023 Dec;344:140304. doi: 10.1016/j.chemosphere.2023.140304. Epub 2023 Sep 30.

DOI:10.1016/j.chemosphere.2023.140304
PMID:37783353
Abstract

The rapid development of modern agriculture aggravated water eutrophication. Therein, efficient and selective removal of phosphorus in water is the key to alleviating eutrophication. It is well known that lanthanum (La)-based material is a kind of outstanding phosphorus-locking agent. Therefore, improving the property of La-based adsorbents is a hot topic in this field. Herein, novel porous hydroxyl double salts (La/Bi-HDS) with bimetallic capture sites were prepared. The experimental result shows that La/Bi-HDS could maintain the high removal rate in the solution with a higher concentration of competing ions and the maximum P adsorption quantity of La/Bi-HDS attains 168.12 mg/g. Mechanistic studies supported by density functional theory (DFT) calculation demonstrate that introducing Bi optimizes the electronic structure of La, reducing adsorption energy. In addition, the surface analysis shows that the introduction of Bi, which increases the pore size and volume of the material, improves the utilization efficiency of the active site. In a word, the introduction of Bi element as a strategy of killing two birds with one stone successfully improved the performance of La-based adsorbent. It provided a new direction for developing an efficient phosphorus-locking agent.

摘要

现代农业的快速发展加剧了水体富营养化。其中,高效、选择性地去除水中的磷是缓解富营养化的关键。众所周知,基于镧(La)的材料是一种出色的磷固定剂。因此,提高 La 基吸附剂的性能是该领域的热门话题。在此,制备了具有双金属捕捉位点的新型多孔羟基复盐(La/Bi-HDS)。实验结果表明,La/Bi-HDS 可以在竞争离子浓度较高的溶液中保持较高的去除率,La/Bi-HDS 的最大磷吸附量达到 168.12mg/g。密度泛函理论(DFT)计算支持的机理研究表明,引入 Bi 优化了 La 的电子结构,降低了吸附能。此外,表面分析表明,Bi 的引入增加了材料的孔径和体积,提高了活性位点的利用效率。总之,引入 Bi 元素作为一石二鸟的策略成功地提高了 La 基吸附剂的性能。为开发高效磷固定剂提供了新的方向。

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