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金属矿山 ›› 2026, Vol. 55 ›› Issue (8): 269-.

• 安全与环保 • 上一篇    

磷石膏-磷尾矿基地聚物去除磷石膏渗滤液中游离氟离子的行为和机理

陈余熔1,2 杨 浪1,2 蔡 凯1,2 饶  峰1,2 赵媛媛3   

  1. 1.福州大学紫金地质与矿业学院,福建 福州 350108;2.福建省新能源金属绿色提取与高值利用重点实验室,福建 福州 350108; 3.四川发展龙蟒股份有限公司,四川 成都 610094
  • 出版日期:2026-08-15 发布日期:2026-09-08
  • 通讯作者: 杨 浪(1992—),男,副教授,博士,硕士研究生导师。
  • 作者简介: 陈余熔(2000—),女,硕士研究生。
  • 基金资助:
    国家自然科学基金项目(编号:52504287);福建省产学研合作项目(编号:2023Y4017)。

Behavior and Mechanism of Free Fluoride Ion Removal from Phosphogypsum Leachate by Phosphogypsum-Phosphate Tailings-Based Geopolymer

CHEN Yurong1,2 YANG Lang1,2 CAI Kai1,2 RAO Feng1,2 ZHAO Yuanyuan3   

  1. 1.Zijin School of Geology and Mining,Fuzhou University,Fuzhou 350108,China; 2.Fujian Provincial Key Laboratory of Green Extraction and High-Value Utilization of New Energy Metals,Fuzhou 350108,China; 3.Sichuan Development Lomon Co.,Ltd.,Chengdu 610094,China
  • Online:2026-08-15 Published:2026-09-08

摘要: 磷石膏渗滤液中高浓度游离氟离子的有效去除是磷化工行业面临的关键环境挑战。为实现“以废治 废”目标,本研究以磷石膏、磷尾矿及高炉矿渣为主要原料,通过碱激发与H2 O2 化学发泡工艺,制备了多孔地质聚合 物(多孔地聚物),并系统探究了其对氟离子的吸附行为与机理。试验结果表明,优化的多孔地聚物在pH=4、氟离子 初始浓度50 mg/L、温度25 ℃条件下,对氟离子的去除率达66.7%。吸附动力学符合准二级动力学模型,表明化学吸 附主导吸附过程;吸附等温线更符合Freundlich模型,揭示了氟离子在非均质表面的多层吸附特征。机理研究表明, 吸附是物理截留、离子交换与化学沉淀协同作用的结果,其中地聚物中溶出的Ca2+与F-反应,生成CaF2 沉淀是氟离 子得以稳定固定的主导机制。本研究为磷石膏与磷尾矿的高附加值资源化利用提供了新途径,所开发的多孔地聚物 在含氟废水治理领域展现出良好的应用潜力。

关键词: 地质聚合物 , 磷尾矿 , 磷石膏 , 氟离子去除 , 吸附机理 , 以废治废

Abstract: The efficient removal of high-concentration free fluoride ions from phosphogypsum leachate poses a significant environmental challenge for the phosphorus chemical industry.To achieve the goal of "waste control by waste",this study fabri cated a porous geopolymer using phosphogypsum,phosphate tailings,and blast furnace slag as primary raw materials via alkali activation and H2 O2 chemical foaming.The adsorption behavior and mechanism of the porous geopolymer towards fluoride ions were systematically investigated.Experimental results showed that the optimized porous geopolymer achieved a fluoride removal rate of 66.7% under the conditions of pH=4,initial fluoride concentration of 50 mg/L,and temperature of 25 ℃.The adsorp tion kinetics followed the pseudo-second-order model,indicating a chemisorption-dominated process.The adsorption isotherm was better fitted by the Freundlich model,suggesting multilayer adsorption on heterogeneous surfaces.Mechanistic studies re vealed that the adsorption involved synergistic effects of physical interception,ion exchange,and chemical precipitation.The dominant mechanism was identified as the chemical precipitation of CaF2 ,resulting from the reaction between Ca2+ dissolved from the geopolymer and F- in solution.This research provides a novel approach for the high-value-added utilization of phosph ogypsum and phosphate tailings,and the developed porous geopolymer demonstrates promising potential for application in fluor ide-containing wastewater treatment.

Key words: geopolymer,phosphate tailings,phosphogypsum,fluoride ions removal,adsorption mechanism,waste control by waste

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