Literature DB >> 32531584

Phosphate sequestration by magnetic La-impregnated bentonite granules: A combined experimental and DFT study.

Zhenxing Zhong1, Xiejuan Lu2, Rui Yan3, Shuo Lin4, Xiaohui Wu5, Mingjie Huang3, Zhengqian Liu3, Fugang Zhang6, Beiping Zhang3, Hongping Zhu7, Xin Guo8.   

Abstract

To use the lanthanum hydroxide (La(OH)3) as a low-cost, highly-efficient, and recyclable adsorbent, it could be embedded on a magnetic substance to improve its physical features and lower the overall cost. Herein, novel millimetric-size magnetic lanthanum-modified bentonite (La-MB) granules were fabricated for P sequestration, and the adsorption performance and mechanisms were systematic studied. The maximum capacity of P uptake by La-MB was up to 48.4 mg/g, which was higher than many previous reported La-based adsorbents. Moreover, the enhanced uptake of P was achieved over a wide pH range (3-9) and in the coexistence of common anions (Cl-, NO3-, and SO42-). Besides, the exhausted La-MB can be effectively regenerated by 5 mol/L NaOH with about 94.5% desorption efficiency and 60.8% uptake capacity remained during 5 cycles. The La-MB also exhibited excellent performance of anti-interference in two kinds of real wastewaters. The postsorption characterization and DFT calculations revealed that the electrostatic interaction and chemical precipitation jointly facilitated phosphate sequestration by La-MB during the rapid sorption phase, while ligand exchange and complexation reaction played more important roles than others during the slow sorption step. The electrostatic interaction not only effectively promoted the ligand exchange, and also further accelerated chemical precipitation via the formation of LaPO4 during the whole process of phosphate uptake. Overall, millimetric La-MB is considered to have great potential for engineering application, and this work also provides new insights into the molecular-level mechanism of phosphate sequestration by La-MB.
Copyright © 2020 Elsevier B.V. All rights reserved.

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Keywords:  Adsorption; DFT study; Lanthanum; Mechanism; Phosphate

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Year:  2020        PMID: 32531584     DOI: 10.1016/j.scitotenv.2020.139636

Source DB:  PubMed          Journal:  Sci Total Environ        ISSN: 0048-9697            Impact factor:   7.963


  1 in total

1.  Adsorption of Hexavalent Chromium by Sodium Alginate Fiber Biochar Loaded with Lanthanum.

Authors:  Xinzhe Sun; Peng Guo; Yuanyuan Sun; Yuqian Cui
Journal:  Materials (Basel)       Date:  2021-04-26       Impact factor: 3.623

  1 in total

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