4.7 Review

UiO series of metal-organic frameworks composites as advanced sorbents for the removal of heavy metal ions: Synthesis, applications and adsorption mechanism

期刊

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.ecoenv.2020.111577

关键词

UiO-MOFs; Synthesis; Applications; Heavy metal ions; Removal; Adsorption mechanism

资金

  1. National Natural Science Foundation of China [21467028, 21777129]
  2. Program for Innovative Research Group of Gansu Province, China [1210RJIA001]
  3. Special Fund Project for the Central Government to Guide Local Science and Technology Development (2020)
  4. Key Laboratory of Ploymer Materials of Gansu Province
  5. Key Laboratory of Ecological Environment Related Polymer Materials of Ministry of Education
  6. Key Laboratory of Bioelectrochemistry & Environmental Analysis of Gansu Province

向作者/读者索取更多资源

Heavy metal pollution poses a threat to the environment and human health, making effective removal of these toxic pollutants a priority. Metal-organic frameworks (MOFs) have gained attention in environmental analytical chemistry due to their porous structure and stability. This review focuses on the applications of UiO series MOFs for removing heavy metal ions from various environmental samples, discussing their synthesis, adsorption characteristics, and future trends in MOF-based composites for pollutant removal.
Heavy metal pollution has threatened the ecological environment and human health, therefore, effective removal of these toxic pollutants from various complex substrates is of great significance. So far, adsorption is still one of the most effective approaches. Metal-organic frameworks (MOFs), which are porous crystalline materials consisting of metal ions or metal clusters and organic ligands through coordination bonds. Due to their high surface area, porosity, as well as good chemical/thermal stability, the materials have recently attracted great attention in environmental analytical chemistry. This review mainly focused on the recent studies about the applications of UiO series MOFs and their composites as the emerging MOFs, which have been used effectively for the adsorption and removal of diverse heavy metal ions from a variety of environmental samples as novel adsorption materials. Moreover, an elaboration about UiO-MOFs and its composites including the synthetic methods and the applications of these materials in the removal of heavy metal ions were presented in detail. In addition, the adsorption characteristics and mechanism of UiO-MOFs as solid sorbents for heavy metal ions were discussed, including adsorption isotherms equation, adsorption thermodynamics, and kinetics. To this end, the developing trends of MOF-based composites for the removal of heavy metal ions had also prospected. This review will provide a new idea for the study of the adsorption mechanism of heavy metal ions on sorbents and the development of highperformance media for the efficient removal of pollutants in wastewater.

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