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现代矿业 ›› 2026, Vol. 42 ›› Issue (06): 205-209.

• 安全·环保 • 上一篇    下一篇

钛石膏理化特征及土壤化潜力

徐丹丹   

  1. 马鞍山市环境宣传教育中心
  • 出版日期:2026-06-25 发布日期:2026-07-27

Physical and Chemical Characieristics and Soilization Potentiality of Titanium Gypsum Solid Waste

XU Dandan   

  1. Maanshan Environmental Education and Publicity Center
  • Online:2026-06-25 Published:2026-07-27

摘要: 为探究钛石膏作为土壤基质材料的环境安全性与可行性,依托 X 射线衍射分析其物 相组成,通过激光粒度仪测定其粒度分布特征,并采用化学分析方法测定有效磷、速效钾等关键养 分指标,从物质组成与养分基础 2个层面评估钛石膏土壤化的潜力。结果表明,钛石膏的主要矿物 成分为二水硫酸钙,同时含有少量铁氧化物等杂质相;粒度分析显示,其以粉粒组分为主,质地介 于粉砂质壤土与粉砂质黏壤土之间,具备良好的保水保肥基础;养分测定结果显示,有效磷含量处 于较高水平,速效钾含量相对偏低,呈现明显的“高磷低钾”特征。因此,钛石膏具有作为土壤改良 剂或绿化用土基质材料的潜力,可实现安全有效的土壤化利用。

关键词: 钛石膏, 固体废物, 土壤化, 资源化利用

Abstract: In order to explore the environmental safety and feasibility of titanium gypsum as a soil matrix material,the mineral phase composition of titanium gypsum was analyzed by X-ray diffraction,the particle size distribution characteristics were determined by laser particle size analyzer,and the key nutri⁃ ent indexes such as available phosphorus and available potassium were determined by chemical analysis method. The potential of titanium gypsum soilization was evaluated from two aspects of material composi⁃ tion and nutrient basis. The results show that the main mineral composition of titanium gypsum is calcium sulfate dihydrate,and contains a small amount of iron oxide and other impurity phases. Particle size analy⁃ sis shows that it is mainly composed of silt components,and its texture is between silty loam and silty clay loam,which has a good foundation for water and fertilizer conservation. The results of nutrient determina⁃ tion showed that the content of available phosphorus was at a high level,and the content of available potas⁃ sium was relatively low,showing obvious characteristics of high phosphorus and low potassium. Therefore, titanium gypsum has the potentiality to be used as soil modifier or soil matrix material for greening,which can achieve safe and effective soil utilization.

Key words: titanium gypsum, solid waste, soilization, resource utilization