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首页> 外文期刊>Minerals >Preparation of High Purity V 2 O 5 from a Typical Low-Grade Refractory Stone Coal Using a Pyro-Hydrometallurgical Process
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Preparation of High Purity V 2 O 5 from a Typical Low-Grade Refractory Stone Coal Using a Pyro-Hydrometallurgical Process

机译:热解湿法从典型的低品位耐火石煤中制备高纯V 2 O 5

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The recovery of vanadium from a typical low-grade refractory stone coal was investigated using a pyro-hydrometallurgical process specifically including blank roasting, acid leaching, solvent extraction, and chemical precipitation. The appropriate role of parameters in each process was analyzed in detail. Roasting temperature and roasting time during the roasting process showed a significant effect on leaching efficiency of vanadium. Using H 2 SO 4 as a leaching agent, vanadium leaching efficiency can achieve above 90% under the optimum leaching conditions of CaF 2 dosage of 5%, sulfuric acid concentration of 4 mol/L, liquid to solid ratio of 2:1 mL/g, leaching time of 2 h, and leaching temperature of 95 ???°C. 99.10% of vanadium can be extracted from the leaching solution in three stages under the conditions of initial pH of 1.6, trioctylamine (TOA) extractant concentration of 20% (vol), phase ratio (A/O) of 2, and reaction time of 2 min. 1.0 mol/L NaOH was used to strip vanadium from the extracted solvent phase. After purification and precipitation, vanadium can be crystallized as ammonium metavanadate. The V 2 O 5 product with a purity of 99.75% is obtained after ammonium metavanadate thermal decomposition at 550 ???°C for 2 h. The total vanadium recovery in the whole process is above 88%. This process has advantages of short operation time, high vanadium extraction efficiency, and high purity of the product.
机译:使用热湿法冶金方法研究了从典型的低品位耐火石煤中回收钒的方法,具体包括空白焙烧,酸浸,溶剂萃取和化学沉淀。详细分析了参数在每个过程中的适当作用。焙烧过程中的焙烧温度和焙烧时间对钒的浸出效率有显着影响。以H 2 SO 4为浸出剂,在CaF 2用量为5%,硫酸浓度为4 mol / L,液固比为2:1 mL /的最佳浸出条件下,钒的浸出效率可达到90%以上。 g,浸出时间为2小时,浸出温度为95℃。在初始pH值为1.6,三辛胺(TOA)萃取剂浓度为20%(vol),相比(A / O)为2,反应时间为的条件下,可以从三个阶段从浸出溶液中提取99.10%的钒。 2分钟使用1.0 mol / L NaOH从萃取的溶剂相中汽提钒。纯化和沉淀后,钒可以结晶为偏钒酸铵。在偏钒酸铵在550℃下热分解2小时后,获得纯度为99.75%的V 2 O 5产物。整个过程中钒的总回收率高于88%。该工艺具有操作时间短,钒提取效率高和产物纯度高的优点。

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