Enhanced removal of fluoride from groundwater using biosynthetic hydroxyapatite modified by bimetallic (La–Fe or La–Al) hydroxides
Author:
Funder
National Natural Science Foundation of China
National Key Research and Development Program of China
Publisher
Elsevier BV
Reference52 articles.
1. Facile synthesis of bismuth and iron co-doped hydroxyapatite nanomaterials for high-performance fluoride ions adsorption;Adamu;J. Environ. Chem. Eng.,2023
2. Prevalence and risk analysis of fluoride in groundwater around sandstone mine in Haryana, India;Ambastha;Rend. Lincei-Sci. Fis.,2021
3. Calcium carbonate nanoparticles fabricated by a facile method based on the colloidal gas aphrons for removal of fluoride ions from aqueous solutions;Banihashemi;Mater. Chem. Phys.,2021
4. Fe3+ decorated titanate nanotubes for enhanced fluoride adsorption;Biswas;Mater. Today: Proc.,2021
5. Synthesis of Fe2O3-modified porous geopolymer microspheres for highly selective adsorption and solidification of F− from waste-water;Chen;Compos. Part. B-Eng.,2019
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