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Adsorption of rare earth elements (Ce3+, La3+, and Nd3+) and recovery from phosphogypsum leachate using a novel ZSM-5 zeolite

  • Guilherme Luiz Dotto
  • , Diana Pinto
  • , Luis Felipe Oliveira Silva*
  • , Alejandro Grimm
  • , Mohammad Rizwan Khan
  • , Naushad Ahmad
  • , Irineu A.S. de Brum
  • , Jyri Pekka Mikkola
  • , Glaydson S. dos Reis
  • *Corresponding author for this work

Research output: Contribution to journalArticleScientificpeer-review

21 Citations (Scopus)
167 Downloads (Pure)

Abstract

ZSM-5 zeolite is a multifunctional material highly efficient for adsorbing ions. Our ZSM-5 was synthesized by employing a nucleating gel as a structure-directing agent, followed by homogenization and hydrothermal treatment. The as-prepared ZSM-5 was physicochemically characterized to assess its properties. Next, the as-prepared zeolite was employed as an adsorbent to remove rare earth elements, REEs from synthetic solutions and real phosphogypsum leachate under batch mode operation. As expected, the ZSM-5 adsorbent was discovered to be highly microporous with abundant surface functionalities, which could positively impact REE adsorption. The adsorption data indicated a high affinity between ZSM-5 and all three REEs with rapid kinetics and high adsorption capacities. The modeling study suggested that the adsorption kinetic data were well fitted by Avrami-fractional order, and Liu described the equilibrium data. The maximum adsorption capacity for Ce3+, La3+, and Nd3+ were 99.42 mg g−1, 96.43 mg g−1, 118.10 mg g−1, respectively. Further, the thermodynamic analysis revealed that the interaction between ZSM-5 and Ce3+, La3+, and Nd3+ was favorable, spontaneous, and endothermic. The efficiency of ZSM-5 adsorbent was also studied in recovering several REEs from leachate of phosphogypsum wastes, and the data results proved its potency to do so. The findings reported in this work support the idea that ZSM-5 can be successfully used as an adsorbent to recover REEs from synthetic and real samples.

Original languageEnglish
Article number134549
JournalColloids and Surfaces A: Physicochemical and Engineering Aspects
Volume698
DOIs
Publication statusPublished - 5 Oct 2024
MoE publication typeA1 Journal article-refereed

Funding

This work was funded by the Brazilian National Council for Scientific and Technological Development/CNPq (Grant 405982/2022\u20134 and Grant 303992/2021\u20132) and Coordination for the Improvement of Higher Education Personnel/CAPES (Financial code 001). Financial support from the Swedish Research Council FORMAS (grant No. 2021\u201300877) is acknowledged. This work is also a part of activities of the Technical Chemistry Department of Chemistry, Chemical-Biological Centre, Ume\u00E5 University, Sweden, and the Laboratory of Industrial Chemistry and Reaction Engineering, Johan Gadolin Process Chemistry Centre at \u00C5bo Akademi University, Finland. The Swedish Bio4Energy program is gratefully acknowledged. The authors would like to thank the Researchers Supporting Project number (RSPD2024R668), King Saud University, Riyadh, Saudi Arabia. This work was funded by the Brazilian National Council for Scientific and Technological Development/CNPq (Grant 405982/2022-4 and Grant 303992/2021-2) and Coordination for the Improvement of Higher Education Personnel/CAPES (Financial code 001). Financial support from the Swedish Research Council FORMAS (grant No. 2021\u201300877) is acknowledged. This work is also a part of activities of the Technical Chemistry Department of Chemistry, Chemical-Biological Centre, Ume\u00E5 University, Sweden, and the Laboratory of Industrial Chemistry and Reaction Engineering, Johan Gadolin Process Chemistry Centre at \u00C5bo Akademi University, Finland. The Swedish Bio4Energy program is gratefully acknowledged. The authors would like to thank the Researchers Supporting Project number (RSPD2024R668), King Saud University, Riyadh, Saudi Arabia.

Keywords

  • Adsorption of rare earth elements
  • Ion-exchange mechanism
  • Microporous zeolite

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