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Updated: Sep 10, 2025

Rapid Mix Preparation of Bioinspired Nanoscale Hydroxyapatite for Biomedical Applications
Published on: February 23, 2017
Synthesis and highly selective adsorption of hydroxyapatite in situ self-Co-doped by magnesium-fluorine in phosphate
Yi Zhao1, Junyang Leng1, Keyuan Sun2
1School of Chemical Sciences & Technology, School of Materials and Energy, Yunnan Provincial Center of Technology Innovation for New Materials and Equipment in Water Pollution Control, Yunnan University, Institute of International Rivers and Eco-security, Kunming, 650091, China; Institute of Frontier Technologies in Water Treatment, Kunming, 650503, China.
Abstract:
The main components of waste phosphate tailings (WPT) were used in this study for high-value purposes. In particular, these tailings were utilized as raw materials to create magnesium-fluoride self-co-doped hydroxyapatite (abbreviated Mg-F-HAP), a material with a high adsorption capacity and selectivity. Notably, fluorine doping raises the materials' adsorption capacity, whereas magnesium doping improves selectivity. Using the original WPT components in a one-pot process, self-co-doping of Mg-F-HAP at room temperature and pressure was accomplished. It is a mesoporous material with a specific surface area of 117.05 m2/g. This material exhibited very high adsorption capacity for anionic organic pollutants (methyl orange) with the maximum adsorption capacity calculated from Langmuir fitting was 2172 mg/g at pH 7. Which is 51.42, 17.46 and 1.54 times higher than that of commercially available HAP, HAP containing fluoride, and HAP containing magnesium, respectively. The adsorption experiments conducted with a mixture of methyl orange (MO) and cationic organic pollutants (methylene blue) confirmed that the novel material exhibits exceptionally high selectivity towards MO. Furthermore, we have explored its application in adsorbing organic substances from real water bodies, resulting in a 34.1 % reduction in the COD value (from 4100 mg/L to 2700 mg/L).
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