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METHOD OF PROCESSING QUARTZ-LEUCOXENE CONCENTRATES

机译:石英-白二烯浓缩物的处理方法

摘要

FIELD: chemistry.;SUBSTANCE: invention relates to a method of processing quartz-leucoxene concentrates containing high concentrations of rutile-quartz aggregates, and can be used to produce synthetic rutile. The method involves fluorination of the concentrate using ammonium fluoride while heating with separation of ammonia water, thermal treatment of the fluorination product with separation of silicon compounds in form of a sublimate of a ammonium silicofluoride and titanium in form of a residue of synthetic rutile and obtaining titanium and silicon dioxides in form of end products. Before fluorination, the initial concentrate is mixed with an ammonium fluoride solution with concentration of 300-400 g/l. The mixture is dried at temperature of up to 100°C and fluorination is carried out while raising the temperature to above 190°C. The fluorination product is thermally treated with separation of titanium and silicon compounds at temperature 250-280°C for 0.8-1.0 hours. The obtained residue of synthetic rutile is burnt at 800-850°C while trapping fluorine with ammonia water and obtaining an ammonium fluoride solution. The sublimate of ammonium silicofluoride is treated with ammonia water to obtain silicon dioxide with nanosized particles and the ammonium fluoride solution, which is mixed with the ammonium fluoride solution obtained from burning the residue of synthetic rutile, is evaporated to concentration of 300-400 g/l and then mixed with a new portion of the initial concentrate.;EFFECT: higher quality of synthetic rutile, reduced power consumption and obtaining silicon dioxide with nanosized particles.;2 ex
机译:技术领域本发明涉及一种加工含有高浓度金红石-石英聚集体的石英-次二甲苯浓缩物的方法,并且可用于生产合成金红石。该方法包括使用氟化铵对浓缩物进行氟化,同时加热并分离出氨水;对氟化产物进行热处理,分离硅氟化物的升华物形式的硅化合物和合成金红石的残余物形式的钛。最终产品形式的钛和二氧化硅。在氟化之前,将初始浓缩物与浓度为300-400 g / l的氟化铵溶液混合。将该混合物在最高100℃的温度下干燥,并在将温度升高到190℃以上的同时进行氟化。在250-280℃的温度下,通过分离钛和硅化合物热处理氟化产物0.8-1.0小时。将得到的合成金红石型残余物在800-850℃下燃烧,同时用氨水捕集氟并获得氟化铵溶液。用氨水处理硅氟氟化物的升华物,得到具有纳米级颗粒的二氧化硅,将氟化铵溶液与燃烧合成金红石的残余物得到的氟化铵溶液混合,蒸发至浓度为300-400 g / l,然后与新的初始浓缩物混合。效果:更高质量的合成金红石粉,降低了功耗并获得了具有纳米级颗粒的二氧化硅。2ex

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