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金属矿山 ›› 2025, Vol. 54 ›› Issue (6): 293-301.

• 矿物材料 • 上一篇    下一篇

磷石膏合成羟基磷灰石的环境领域应用研究进展

望兆博1   覃阳洁1   江山竹1   池汝安1   黄胜超1   马会娟2   李中军   

  1. 1. 湖北三峡实验室磷石膏综合利用研发中心,湖北 宜昌 443007;2. 湖北兴发化工集团股份有限公司,湖北 宜昌 443007
  • 出版日期:2025-06-15 发布日期:2025-07-09
  • 作者简介:望兆博(1996—),男,助理研究员,博士。
  • 基金资助:
    湖北省自然科学基金项目(编号:2025AFD245);宜昌市自然科学研究项目(编号:A24-3-044)。 

Research Progress on the Application of Hydroxyapatite Synthesized from Phosphogypsum in Environmental Fields 

WANG Zhaobo 1   QIN Yangjie 1   JIANG Shanzhu 1   CHI Ru′an 1   HUANG Shengchao 1 MA Huijuan 2  LI Zhongjun   

  1. 1. Phosphogypsum Utilization R&D Center,Hubei Three Gorges Laboratory,Yichang 443007,China; 2. Hubei Xingfa Chemical Group Co. ,Ltd. ,Yichang 443007,China
  • Online:2025-06-15 Published:2025-07-09

摘要: 我国磷石膏(PG)生产量和堆存量极为庞大,严重破坏生态环境,对人类健康构成潜在威胁。 为实现 “以废治废”的综合治理模式,将废弃磷石膏化学转化合成为羟基磷灰石(PGHAP),并应用于环境领域,是一条新颖 的资源化途径,在磷化工、环境材料、水处理等领域具有重大意义。 通过文献分析,综述了 PGHAP 的合成方法及机 理,介绍了 PGHAP 独特的物理化学特性及环境功能,并总结了近年来 PGHAP 及其复合材料在环境领域的应用研究。 指出 PGHAP 可作为一种成本低廉、性能优良的环境功能材料,对重金属离子和氟离子等离子型污染物具有优异的吸 附性能,其主要吸附机理包括静电相互作用、表面络合作用、溶解-沉淀以及重金属与晶格之间的离子交换作用;PGHAP 在去除水中酚类、染料、抗生素等方面具有潜力和前景,元素掺杂改性及复合材料是 PGHAP 材料的发展趋势与 方向,然而现有研究报道较少,未来需在研究和应用方面进一步拓展与探索。 

关键词: 磷石膏,   羟基磷灰石,   化学转化 , 水处理 , 环境领域 

Abstract: China has an extremely large production and stockpiling volume of phosphogypsum ( PG),which seriously damages the ecological environment and poses potential threats to human health. In order to achieve the comprehensive governance model of " treating waste with waste" ,the chemical conversion of waste phosphogypsum into hydroxyapatite (PGHAP) and its application in the environmental field represent a novel resource utilization approach,holding significant importance in fields such as phosphorus chemistry,environmental materials,and water treatment. Through literature analysis,this paper summarizes the synthesis methods and mechanisms of PGHAP,introduces its unique physicochemical properties and environmental functions,and reviews the application research of PGHAP and its composite materials in the environmental field in recent years. The results showed that PGHAP can serve as a low-cost and high-performance environmental functional material,demonstrating excellent adsorption performance for ionic pollutants such as heavy metal ions and fluoride ions. Its main adsorption mechanisms include electrostatic interaction,surface complexation,dissolution-precipitation,and ion exchange between heavy metals and the crystal lattice. PGHAP also shows potential and prospects in removing phenols,dyes,antibiotics,etc. ,from water. Elemental doping modification and composite material development are the trends and directions for PGHAP materials. However,existing research reports are relatively scarce,and further expansion and exploration in research and application are required in the future. 

Key words: phosphogypsum,hydroxyapatite,chemical transformation,water treatment,environmental field 

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