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Rapid industrialization has significantly contaminated aquatic ecosystems with heavy metals, dyes, and pharmaceutical pollutants, threatening ecosystems and human health. Hydroxyapatite (HA) synthesized from natural sources has emerged as an eco-friendly remediation material due to its exceptional adsorption capacity, ion-exchange capability, and cost-effectiveness. Despite extensive studies on HA synthesis, the relationship between green-synthesis strategies and pollutant-removal efficiency remains underexplored. This review summarizes recent advances in green-synthesized HA nanoparticles and composites, correlating synthesis conditions and functionalization strategies with material properties and pollutant-removal efficiencies, underlying adsorption–photocatalysis synergy. The findings indicate green-HA materials enable efficient, versatile pollutant removal for sustainable water remediation.
Keerthisinghe et al. (Sat,) studied this question.
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