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Selective extraction of rare earth elements from monazite ores with high iron content

机译:用高铁含量从单藏矿石中选择性提取稀土元素

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摘要

Rare earth elements are essential for modern life products and green technologies. Recent supply constraints have boosted the development of rare earth projects after the price peak of 2011. The feasibility of a project depends on the definition of a processing route, which in turn depends primarily on the rare earth mineral, with monazite and bastnaesite representing the two most relevant minerals. Monazite-type ores usually contain high acid consumption impurities, such as iron, aluminum, calcium, magnesium and phosphates, and may also contain prohibitive levels of radioactive thorium in its composition. Based on thermodynamic analysis, the present work discusses the fundamentals of a selective process route for rare earth extraction from monazite ores with high iron content. This process involves sulfation by means of concentrated sulfuric acid and roasting at a high temperature. The route yields high rare earth extraction with low iron and thorium extraction and low acid consumption. Rare earth extractions as high as 80 percent were achieved, while iron and thorium extractions were lower than 1 percent, and acid consumption was lower than 0.34 kg of sulfuric acid per kg of ore. The operational window was compared to the one predicted by thermodynamic modeling, with 700 °C representing the optimal roasting temperature.
机译:稀土元素对于现代生活产品和绿色技术至关重要。最近的供应限制促进了2011年价格高峰后的稀土项目的发展。项目的可行性取决于加工路线的定义,这又依赖于稀土矿物质,用Monazite和Bastnaesite代表这两个大多数相关矿物质。 Monazite型矿石通常含有高酸消耗杂质,例如铁,铝,钙,镁和磷酸盐,并且还可能含有其组成中的放射性钍的禁止水平。基于热力学分析,本作研究探讨了稀土矿石稀土粒子的选择性过程途径的基本原理。该方法通过浓硫酸和在高温下焙烧硫化。该途径产生高稀土萃取,低铁和钍萃取和低酸消耗。稀土提取高达80%,而钢铁和钍萃取低于1%,酸消耗低于每千克的0.34千克硫酸。将操作窗口与热力学建模预测的,700℃表示最佳焙烧温度。

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