Composition, Properties and Using Fields of Product of Phosphogypsum Recycling

F. L. Kapustin, N. Mityushov, S. Bednyagin
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Abstract

Nowadays about 200 million tons of phosphogypsum (PG) have been stored in the dumps of the chemical industry and non–ferrous metallurgy of Russia which pollutes the environment. This waste contains up to 98 % of two–water gypsum and impurities including rare earth metals (REM) in an amount of up to 0.5 % preventing its use in the production of building materials. A complex technology of FG recycling including extraction of REM, neutralization and dehydration of the pulp for using in the production of gypsum binders and Portland cement. Results of determination of density, grain, chemical and mineral compositions and structure of the product of recycling of FG of the “Sredneuralsky copper smelting plant” are presented. After the REM extraction, the PG is a loose lumpy mass with moisture content of 28–32 % which contains about 10 % of particles larger than 40 mm and not more than 60 % of particles less than 10 mm, it has a true density of 2.26 g/cm3, pH of aqueous extract is 5.95. It has the following chemical composition, mass. %: 0.87 SiО2; 0.93 A12O3; 0.20 Fe2O3; 31.00 CaO; 0.034 MgO; 44.27 SО3; 0.10 K2О; 0.42 Nа2О; 0.45 Р2О5(general); 20.73 of mass loss of ignition. The mineral composition of the PG processing product is represented by two-water gypsum and a slight amount of quartz. The possibility of using gypsum–containing waste in the production of gypsum binders and cement is considered. The effect of temperature and duration of firing, the dispersion, the type and quantity of chemical and mineral admixtures on physical and mechanical properties of gypsum binder, the influence of the type and amount of mineral additive on pelletizing and physic–mechanical properties of the granulated and pressed PG and its effects on setting time and strength of Portland cement are represented. It is recommended to use PG to obtain low–temperature and composite gypsum binders, regulation of Portland cement setting after extraction of REM. Keywords: phosphogypsum, recycling, composition, properties, technology, gypsum binder, Portland cement
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磷石膏回收产品的组成、性能及应用领域
目前,俄罗斯化学工业和有色冶金的垃圾场中储存着约2亿吨磷石膏,对环境造成了污染。这种废物含有高达98%的两水石膏和杂质,包括稀土金属(REM),其含量高达0.5%,阻碍了其在建筑材料生产中的使用。一种复杂的FG回收技术,包括REM的提取,纸浆的中和和脱水,用于生产石膏粘合剂和波特兰水泥。介绍了“斯雷涅拉尔斯基铜冶炼厂”FG回收产品的密度、粒度、化学成分和矿物组成及结构的测定结果。经REM萃取后,PG为松散的块状物质,含水率为28 ~ 32%,其中大于40 mm的颗粒约占10%,小于10 mm的颗粒不超过60%,真密度为2.26 g/cm3,水提液pH为5.95。它有如下的化学成分,质量。%: 0.87 SiО2;铝0.93型;0.20 Fe2O3;31.00曹;0.034采用;44.27 SО3;0.10 K2О;0.42 Nа2О;0.45Р2О5(一般);点火质量损失的20.73。PG加工产品的矿物组成以两水石膏和少量石英为代表。考虑了利用含石膏废弃物生产石膏粘结剂和水泥的可能性。阐述了煅烧温度、煅烧时间、分散程度、化学和矿物外加剂的种类和用量对石膏粘结剂物理力学性能的影响,矿物外加剂的种类和用量对造粒压制PG的成球和物理力学性能的影响,以及对硅酸盐水泥凝结时间和强度的影响。推荐使用PG获得低温复合石膏粘结剂,提取REM后调节硅酸盐水泥凝结。关键词:磷石膏,回收利用,组成,性能,工艺,石膏粘结剂,硅酸盐水泥
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