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白云鄂博混合型稀土精矿在惰性气氛下的热分解行为(英文)
引用本文:孟德亮,黄小卫,冯宗玉,王猛,夏超,赵岩岩.白云鄂博混合型稀土精矿在惰性气氛下的热分解行为(英文)[J].中国有色金属学会会刊,2023,33(1):285-292.
作者姓名:孟德亮  黄小卫  冯宗玉  王猛  夏超  赵岩岩
作者单位:1. 有研科技集团有限公司稀土国家工程研究中心;2. 东北大学冶金学院;3. 北京有色金属研究总院;4. 有研稀土新材料股份有限公司
基金项目:supported by the National Key Research and Development Program of China (No. 2020YFC1909104);;the Science and Technology Major Project of Guangxi, China (No. Guike AA18242022);
摘    要:为了开发和应用白云鄂博混合型稀土精矿的先进冶炼技术,采用Kissinger公式、TGA-DSC和XRD等分析方法,研究在氮气氛下白云鄂博混合型稀土精矿的热分解行为,包括热分解动力学、物相变化规律、铈氧化效率以及物相变化对稀土浸出率的影响。结果表明:在500~550℃焙烧时,焙烧质量损失率约10%、热分解活化能(Ea)为148 k J/mol。550℃焙烧2 h,白云鄂博混合型稀土精矿中氟碳铈矿完全分解,并转化为稀土氧化物和氟氧化物,铈氧化率最大值为0.58%。600℃焙烧2 h,稀土最大浸出率达49.1%。

关 键 词:惰性气氛  热分解  铈氧化  物相变化  白云鄂博混合型稀土精矿
收稿时间:15 October 2021

Thermal decomposition of Bayan Obo mixed rare earth concentrate under inert atmosphere
Affiliation:1. National Engineering Research Center for Rare Earth, GRINM Group Co., Ltd., Beijing 100088, China;2. School of Metallurgy, Northeastern University, Shenyang 110819, China;3. General Research Institute for Nonferrous Metals, Beijing 100088, China;4. GRIREM Advanced Materials Co., Ltd., Beijing 100088, China
Abstract:To provide basic research for the development and application of advanced technology for the metallurgy of Bayan Obo mixed rare earth concentrate (BOMREC), the thermal decomposition behavior of BOMREC under nitrogen atmosphere was investigated by using the Kissinger method, TGA?DSC and XRD etc., including the thermal decomposition kinetics, phase change, cerium oxidation efficiency, and phase change effect on the leaching efficiency of rare earth elements (REEs). The results indicate that during the roasting at 500?550 °C, the mass loss and activation energy (Ea) are approximately 10% and 148 kJ/mol, respectively. After roasting at 550 °C for 2 h, the bastnaesite in the BOMREC is completely decomposed and converted into rare earth oxides and fluorine oxides. The maximum oxidation efficiency of cerium reaches 0.58%. The maximum leaching efficiency of REEs reaches 49.1% after thermal decomposition at 600 °C for 2 h.
Keywords:inert atmosphere  thermal decomposition  cerium oxidation  phase change  Bayan Obo mixed rare earth concentrate
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