Rare earth element stripping from kaolin sands via mild acid treatment

IF 1.6 4区 工程技术 Q3 ENGINEERING, CHEMICAL Asia-Pacific Journal of Chemical Engineering Pub Date : 2023-12-21 DOI:10.1002/apj.3018
Max Koch, Michael Paper, Thomas B. Brück, Tom Nilges
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Abstract

Due to their chemical and physical properties, rare earth elements (REEs) are essential in modern applications such as energy conversion or IT technology. The increasing demand for these elements leads to strong incentives for REE recovery and induces the exploration of new, alternative sources for REEs. Accessing REEs from clay minerals, in our case kaolinite, by an elution process is a promising method. The present study investigates the potential application of REE recovery through elution with different mineral acids (HNO3, H2SO4, and HCl) in a microwave process. The material used in this study—residues from an industrial kaolin production process—contained 2.47 g/kg REEs which is a significant amount for REE recovery. The ability of various mineral acids to solubilize metals was studied to assess the REE content of this residual resource. Around 1.87 g/kg of REEs was eluted from industrial kaolinite residues in hydrochloric acid, 1.71 g/kg in sulfuric acid, and 1.13 g/kg in nitric acid.

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通过弱酸处理从高岭土砂中剥离稀土元素
由于其化学和物理特性,稀土元素(REE)在能源转换或 IT 技术等现代应用中至关重要。对这些元素日益增长的需求强烈刺激了稀土元素的回收,并促使人们探索稀土元素的新替代来源。通过洗脱工艺从粘土矿物(以高岭石为例)中获取 REEs 是一种很有前景的方法。本研究调查了在微波过程中使用不同矿物酸(HNO3、H2SO4 和 HCl)洗脱回收 REE 的潜在应用。本研究使用的材料是工业高岭土生产过程中产生的残留物,其中含有 2.47 克/千克的 REEs,这对于 REE 回收来说是一个很大的量。研究了各种矿物酸溶解金属的能力,以评估这种残余资源的 REE 含量。盐酸、硫酸和硝酸分别从工业高岭石残留物中洗脱出约 1.87 克/千克、1.71 克/千克和 1.13 克/千克的 REEs。
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期刊介绍: Asia-Pacific Journal of Chemical Engineering is aimed at capturing current developments and initiatives in chemical engineering related and specialised areas. Publishing six issues each year, the journal showcases innovative technological developments, providing an opportunity for technology transfer and collaboration. Asia-Pacific Journal of Chemical Engineering will focus particular attention on the key areas of: Process Application (separation, polymer, catalysis, nanotechnology, electrochemistry, nuclear technology); Energy and Environmental Technology (materials for energy storage and conversion, coal gasification, gas liquefaction, air pollution control, water treatment, waste utilization and management, nuclear waste remediation); and Biochemical Engineering (including targeted drug delivery applications).
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