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Efficient recovery of phosphate by La-MOFs: An excellent adsorption performance and mechanism

Yongyi Yu, Jiangyan Song, Ziyi Zhang, Weisen Yang, Wenbin Pan, Shaoju Jian, Jiapeng Hu, Qing Luo

2023Progress in Natural Science Materials International40 citationsDOIOpen Access PDF

Abstract

Lanthanum-type metal-organic frameworks (La-MOFs) can be used to mitigate phosphate pollution in wastewater. Herein, La-MOFs was gained via the solvothermal method and its phosphate removal property was examined under various conditions, like variable initial phosphate concentration, solution pH, and co-existing ions. The material morphology, element composition, and crystal morphology of the La-MOFs was characterized using XRD , SEM, FTIR , and XPS . The phosphate removal mechanism was investigated by combining thermodynamic and kinetic analyses. The La-MOFs exhibited superior adsorption capability for surplus phosphate in water, and also had a high selectivity for phosphate in the complexed environment with some co-existing ions. Maximum adsorption was obtained at pH 4. The sorption procedure of La-MOFs aligned more with the Langmuir and pseudo-second order kinetic models, demonstrating monomolecular-layer-controlled chemisorption . And the maximum sorption capacity was 73.69 ​mg ​g −1 . Electrostatic interactions and ligand exchange, which enabled the development of an La–O–P inner-sphere complexation, were identified as the primary mechanisms of phosphate removal. This research provides insights into the optimal conditions and mechanism of phosphate adsorption by La-MOFs.

Topics & Concepts

AdsorptionPhosphateSorptionMaterials scienceChemisorptionLanthanumChemical engineeringInorganic chemistryIon exchangeFourier transform infrared spectroscopyLangmuir adsorption modelX-ray photoelectron spectroscopyMetal-organic frameworkIonChemistryOrganic chemistryEngineeringPhosphorus and nutrient managementLayered Double Hydroxides Synthesis and ApplicationsAdsorption and biosorption for pollutant removal
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