佟志芳, 温皓, 胡晓飞. 稀土电解熔盐渣焙烧产物酸浸提取稀土、锂和氟[J]. 有色金属科学与工程, 2022, 13(4): 141-147. DOI: 10.13264/j.cnki.ysjskx.2022.04.017
引用本文: 佟志芳, 温皓, 胡晓飞. 稀土电解熔盐渣焙烧产物酸浸提取稀土、锂和氟[J]. 有色金属科学与工程, 2022, 13(4): 141-147. DOI: 10.13264/j.cnki.ysjskx.2022.04.017
TONG Zhifang, WEN Hao, HU Xiaofei. Extraction of rare earth, lithium and fluorine by acid leaching of roasted product of rare earth electrolytic molten salt slag[J]. Nonferrous Metals Science and Engineering, 2022, 13(4): 141-147. DOI: 10.13264/j.cnki.ysjskx.2022.04.017
Citation: TONG Zhifang, WEN Hao, HU Xiaofei. Extraction of rare earth, lithium and fluorine by acid leaching of roasted product of rare earth electrolytic molten salt slag[J]. Nonferrous Metals Science and Engineering, 2022, 13(4): 141-147. DOI: 10.13264/j.cnki.ysjskx.2022.04.017

稀土电解熔盐渣焙烧产物酸浸提取稀土、锂和氟

Extraction of rare earth, lithium and fluorine by acid leaching of roasted product of rare earth electrolytic molten salt slag

  • 摘要: 稀土电解熔盐渣经过氧化钙和硫酸铝协同焙烧活化得到焙烧渣,采用硫酸浸出高效提取焙烧渣中稀土、锂、氟,系统考察了不同酸浸条件对稀土、锂、氟浸出率的影响。针对较优酸浸条件下的浸出液,用硫酸钠沉淀析出稀土复盐沉淀,实现稀土分离。结果表明:较优酸浸条件为硫酸浓度4 mol/L、液固体积质量比10:1(单位:mL/g)、浸出温度90 ℃、浸出时间4 h,熔盐渣中镨、钕、钆、锂、氟的浸出率分别为95.83%、96.55%、93.06%、95.52%、94.85%。稀土复盐沉淀纯度高,稀土回收率达99.3%以上。该方法可以高效回收稀土熔盐电解渣中稀土、锂、氟有价元素,对提升稀土熔盐电解渣的全组分利用具有重要意义。

     

    Abstract: Rare earth electrolytic molten salt slag was activated by coordinated roasting with calcium oxide and aluminum sulfate, and sulfuric acid leaching was used to extract the rare earth, lithium, and fluorine in the slag. The effects of different acid leaching conditions on their leaching rates were investigated. For the leachate under the optimal acid leaching conditions, the rare earth compound salt was precipitated with sodium sulfate to realize the separation of rare earth. The results showed that the optimal acid leaching condition was sulfuric acid concentration 4 mol/L, liquid-solid volume ratio 10:1 (unit: mL/g), leaching temperature 90℃, leaching time 4 h. The leaching rates of gadolinium, lithium, and fluorine were 95.83%, 96.55%, 93.06%, 95.52% and 94.85%, respectively. The precipitation purity of rare earth complex sulfate precipitation was high, and the yield of rare earth could reach over 99.3%. The method could be used to recover rare earth, lithium, and fluorine from rare earth molten salt electrolysis slag and was of great significance for improving its utilization of all components.

     

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