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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Rubidium and Potassium Extraction from Granitic Rubidium Ore: Process Optimization and Mechanism Study
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Rubidium and Potassium Extraction from Granitic Rubidium Ore: Process Optimization and Mechanism Study

机译:铷和钾萃取来自花岗岩铷矿石:工艺优化和机制研究

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摘要

Thus far, little is known about the use of granitic rubidium ore for the extraction of rubidium. Herein, we examined the extractability of rubidium and potassium from granitic rubidium ore via sulfuric acid baking, reductive decomposition, and alkaline leaching. In addition, the extraction mechanism was studied by using interdisciplinary approaches based on the mineralogy and thermodynamics. Under the optimum conditions, more than 94% and 92% of Rb and K were extracted, respectively. Mineralogical analysis suggests that the Rb is scatted in micas (biotite and muscovite) and potassium feldspar in the form of isomorphism. Micas were transformed into sulfates during the sulfuric acid baking process. Increasing the dosage of coal, the decomposition temperature, and the time was conducive to the decomposition of sulfates. The sulfates were transformed into aluminum oxide and potassium sulfate during the reductive decomposition process. The basic structure of potassium feldspar was unchanged in the stages of baking and decomposition. The feldspar was finally altered to cancrinite and zeolite in alkaline leaching. These phase transformations reveal the release approach of Rb and K from micas and feldspar.
机译:到目前为止,关于使用花岗岩铷矿石的萃取几乎是众所周知的。在此,我们通过硫酸烘焙,还原分解和碱性浸出检查了来自花岗岩铷矿石的铷和钾的可提取性。此外,通过基于矿物学和热力学的跨学科方法研究提取机制。在最佳条件下,分别提取超过94%和92%的RB和K.矿物学分析表明,RB以云母(Biotite和Muscovite)和相像的形式散布在云母(Biotite和Muscovite)和钾。在硫酸烘焙过程中,云母被转化为硫酸盐。增加煤的剂量,分解温度和时间有利于硫酸盐的分解。在还原分解过程中,将硫酸盐转化成氧化铝和硫酸钾。钾长石的基本结构在烘烤和分解的阶段不变。该长石最终改变为碱土碱浸出中的甲状霉素和沸石。这些相变揭示了来自云母和长石的RB和K的释放方法。

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