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Towards sustainable processing of columbite group minerals: elucidating the relation between dielectric properties and physico-chemical transformations in the mineral phase

机译:致力于可持续加工lum族矿物:阐明矿物相中介电性质与理化转变之间的关系

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摘要

Current methodologies for the extraction of tantalum and niobium pose a serious threat to human beings and the environment due to the use of hydrofluoric acid (HF). Niobium and tantalum metal powders and pentoxides are widely used for energy efficient devices and components. However, the current processing methods for niobium and tantalum metals and oxides are energy inefficient. This dichotomy between materials use for energy applications and their inefficient processing is the main motivation for exploring a new methodology for the extraction of these two oxides, investigating the microwave absorption properties of the reaction products formed during the alkali roasting of niobium-tantalum bearing minerals with sodium bicarbonate. The experimental findings from dielectric measurement at elevated temperatures demonstrate an exponential increase in the values of the dielectric properties as a result of the formation of NaNbO3-NaTaO3 solid solutions at temperatures above 700 °C. The investigation of the evolution of the dielectric properties during the roasting reaction is a key feature in underpinning the mechanism for designing a new microwave assisted high-temperature process for the selective separation of niobium and tantalum oxides from the remainder mineral crystalline lattice.
机译:由于使用氢氟酸(HF),目前用于萃取钽和铌的方法学对人类和环境构成了严重威胁。铌和钽金属粉末和五氧化二氧化物广泛用于节能设备和组件。然而,当前用于铌和钽金属和氧化物的加工方法能量效率低下。用于能源应用的材料及其效率低下之间的这种二分法是探索提取这两种氧化物的新方法的主要动机,该方法研究了含铌钽钽矿物的碱焙烧过程中形成的反应产物的微波吸收特性。碳酸氢钠。在高温下进行介电测量的实验结果表明,由于在700 C以上的温度下形成了NaNbO3-NaTaO3固溶体,介电性能值呈指数增长。对焙烧反应过程中介电性能演变的研究是支持设计新的微波辅助高温工艺以从剩余的矿物晶格中选择性分离铌和钽氧化物的机制的关键特征。

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