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Selective recovery of niobium and tantalum from low-grade concentrates using a simple and fluoride-free process

机译:使用简单且无氟的工艺从低品位精矿中选择性回收铌和钽

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The current hydrometallurgical processes used for niobium and tantalum recovery are operated in strongly acidic and fluoride-containing solutions. To avoid the use of these highly toxic media, a fluoride-free process was developed to recover Nb and Ta from low-grade industrial concentrates. The process is based on the caustic conversion of the raw material with NaOH(aq) at atmospheric pressure and at relatively low temperature which then allows the selective dissolution of sodium hexaniobates. Finally, Nb is recovered as purified hydrous oxide by acidification of the hexaniobate solution. The influence of many industry-relevant parameters (temperature, initial NaOH concentration, residence time, impurity content in the initial concentrate, pH of precipitation) was studied in order to optimize the recovery and purification of the valuable metals. Finally, the process was validated in continuous operation at a pilot scale. High recovery yields for Nb and Ta (65%) were obtained as well as high separation factors toward Ti, Fe, P, S, Th and U. The results demonstrate that it is possible to recover and purify Nb and Ta from industrial concentrates without using fluoride solutions. (c) 2016 Elsevier B.V. All rights reserved.
机译:当前用于回收铌和钽的湿法冶金工艺是在强酸性和含氟溶液中进行的。为了避免使用这些剧毒的介质,开发了一种无氟工艺来从低品位工业精矿中回收Nb和Ta。该方法基于原料在大气压下和相对较低的温度下用NaOH(水溶液)的苛性转化,然后可以选择性溶解六铌酸钠。最后,通过酸化己二酸盐溶液将Nb回收为纯化的含水氧化物。为了优化有价金属的回收和纯化,研究了许多与行业相关的参数(温度,初始NaOH浓度,停留时间,初始精矿中的杂质含量,沉淀的pH)的影响。最后,该过程在中试规模的连续运行中得到了验证。获得了Nb和Ta的高回收率(65%)以及对Ti,Fe,P,S,Th和U的高分离因子。结果表明,无需工业精矿就可以回收和纯化Nb和Ta。使用氟化物溶液。 (c)2016 Elsevier B.V.保留所有权利。

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