Technology for processing phosphogypsum into a fluorescent dye based on calcium sulfide

O. Medennikov, N. Shabelskaya
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Abstract

Objectives. There is considerable economic demand for products obtained by processing phosphogypsum. In particular, calcium sulfide-based materials having luminescent properties are the object of intensive study due to the wide range of possibilities for their use. The alloying of the structure of calcium sulfide with cations of rare earth elements leads to the appearance of a glow having various colors. However, the high cost of such phosphorescent materials is due to the high chemical purity of the reagents required for their synthesis. The development of efficient methods for obtaining calcium sulfide-based luminescent materials from phosphogypsum is part of an integrated approach to solving the problem of synthesizing economically demanded materials from production waste.Methods. The synthesized materials were studied using X-ray phase analysis and scanning electron microscopy. Photos of the samples were taken under illumination with an incandescent lamp or a fluorescent ultraviolet lamp.Results. According to X-ray phase analysis, phosphogypsum is mainly comprised of calcium sulfate dihydrate and calcium sulfate hemihydrate. Heat treatment of a phosphogypsum sample at a temperature of 1073 K is accompanied by the formation of anhydrous calcium sulfate. In the presence of a reducing agent, a composite material is formed containing a phase of anhydrous calcium sulfate and calcium sulfide. Due to the calcium sulfide content, phosphogypsum has luminescent properties when heat-treated in the presence of various reducing agents, including activated carbon, wood charcoal, vegetable oil, citric acid, starch, and sucrose.Conclusions. Optimal technological conditions for obtaining a composite material exhibiting luminescent properties are revealed. The successful synthesis of phosphor from without nonpretreated phosphogypsum is demonstrated. Optimal technological conditions for obtaining a composite material exhibiting luminescent properties are as follows: heat treatment temperature is 1073–1173 K; isothermal holding time is 60 min; reducing agent quantity is 37–50% (mol). The study results are widely applicable to processing wastes obtained from large-scale chemical production involving the production of a highly demanded inorganic product.
以硫化钙为基料的磷石膏荧光染料的加工技术
目标。磷石膏加工后的产品有相当大的经济需求。特别是,具有发光特性的硫化钙基材料由于其广泛的应用可能性而成为深入研究的对象。硫化钙的结构与稀土元素的阳离子的合金化导致了具有各种颜色的辉光的出现。然而,这种磷光材料的高成本是由于合成它们所需的试剂的化学纯度很高。开发从磷石膏中提取硫化钙基发光材料的有效方法,是解决从生产废料中合成经济所需材料问题的综合途径的一部分。采用x射线相分析和扫描电镜对合成材料进行了研究。在白炽灯或荧光紫外线灯的照射下拍摄样品的照片。根据x射线相分析,磷石膏主要由二水合硫酸钙和半水合硫酸钙组成。在1073 K的温度下对磷石膏样品进行热处理,会形成无水硫酸钙。在还原剂存在下,形成含有无水硫酸钙和硫化钙相的复合材料。由于硫化钙的含量,磷石膏在各种还原剂(包括活性炭、木炭、植物油、柠檬酸、淀粉和蔗糖)的存在下热处理时具有发光特性。揭示了获得具有发光性能的复合材料的最佳工艺条件。用未经预处理的磷石膏成功地合成了荧光粉。获得具有发光性能的复合材料的最佳工艺条件为:热处理温度为1073 ~ 1173 K;等温保温时间为60 min;还原剂用量为37-50% (mol)。研究结果可广泛应用于涉及高需求无机产品生产的大规模化工生产中产生的废弃物的处理。
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