盐焙钒酸矿浸出液中钒的回收工艺研究

Ho-Sung Yoon, Seongwoo Heo, Yujin Park, Chul-Joo Kim, K. Chung, R. Kim, Hoseok Jeon
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引用次数: 3

摘要

研究了溶液组分对从钒矿盐焙烧-水浸液中回收偏氰酸铵钒的影响。含钒溶液呈强碱性(pH值为13),为提高偏氰酸铵的沉淀效率,必须将pH值降低至9以下。但在用硫酸调节溶液pH的过程中,铝离子共沉淀,必须先除去。在本研究中,铝以硅酸钠的形式沉淀,并研究了在此过程中减少钒损失的条件。除铝后,用硫酸将溶液pH调节为9或更小,沉淀去除硅酸盐。在此过程中,硫酸的浓度和加入速率对钒的损失有显著影响,通过缓慢加入稀硫酸,尽量减少钒的损失。用三等量的氯化铵在室温下从无铝的钒水溶液中经pH调整后析出偏氰酸铵。以偏氰酸铵形式回收钒的收率超过81%。产品洗涤后,550℃热处理2小时,得到纯度为98.6%的五氧化钒。
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Recovery Process of Vanadium from the Leaching Solution of Salt-Roasted Vanadate Ore
In this study, the effects of solution components were investigated in the recovery of vanadium as ammonium metavanadate from vanadium-ore-salt roasting–water leaching solution. The vanadium-containing solution is strongly alkaline (pH 13), so the pH must be lowered to 9 or less to increase the ammonium metavanadate precipitation efficiency. However, in the process of adjusting the solution pH using sulfuric acid, aluminum ions are co-precipitated, which must be removed first. In this study, aluminum was precipitated in the form of an aluminum-silicate compound using sodium silicate, and the conditions for minimizing vanadium loss in this process were investigated. After aluminum removal, the silicate was precipitated and removed by adjusting the solution pH to 9 or less using sulfuric acid. In this process, the concentration and addition rate of sulfuric acid have a significant influence on the loss of vanadium, and vanadium loss was minimized as much as possible by slowly adding dilute sulfuric acid. Ammonium metavanadate was precipitated using three equivalents of ammonium chloride at room temperature from the aluminum-free, aqueous solution of vanadium following the pH adjustment process. The recovery yield of vanadium in the form of ammonium metavanadate exceeded 81%. After washing the product, vanadium pentoxide with 98.6% purity was obtained following heat treatment at 550 ℃ for 2 hours.
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