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Non-ammonia enrichment of rare earth elements from rare earth leaching liquor in a magnesium salt system I: Precipitation by calcium oxide

机译:镁盐系统中稀土浸出液中的稀土元素的非氨富集I:氧化钙沉淀

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Combining the environmental advantage of magnesium salt compound leaching agent, calcium oxide was used as a precipitant to enrich rare earth elements from rare earth leaching liquor in a magnesium salt system. The use of magnesium salt compound leaching agent and calcium oxide precipitant can achieve the effective circulation of Ca and Mg, and finally solve the ammonia-nitrogen pollution problem in the whole extraction process of the weathered crust elution-deposited rare earth ore. The study suggested that alkaline rare earth sulfates and rare earth hydroxides could generate in the precipitation process, which was proved by the Hazen model calculation and the calcium oxide addition experiments. What's more, it was showed that, under the optimum precipitation conditions, the precipitation efficiency of rare earth was 99.72% and the purity of rare earth concentrate is 82.21%, and the SO3 content in the rare earth concentrate was as high as 13.44% because of the formation of alkaline rare earth sulfates during the precipitation process. In order to reduce the SO3 content, the stirring washing of the precipitation enrichment with an sulfate removal agent was proposed in this paper. The anion of the sulfate removal agent could compete with sulfate ions in the stirring washing process. As a result, sodium hydroxide could be the first choice for further detailed study. When the precipitation enrichment was washed with sodium hydroxide, the purity of the rare earth concentrate was 88.03% and the SO3 content was 7.51% respectively. Hence, a feasible operation would be provided for the non-ammonia enrichment of rare earth from leaching liquor in a magnesium salt system. The research in this paper could have great significance for environmentally-friendly extraction of the weathered crust elution-deposited rare earth ore and the improvement of resource utilization.
机译:结合镁盐复合浸出剂的环境优势,氧化钙用作沉淀剂,以氧化镁盐系统中的稀土浸出液中富含稀土元素。镁盐复合浸出剂和氧化钙沉淀剂的使用可以实现Ca和Mg的有效循环,最后解决风化外壳洗脱稀土矿石的整个提取过程中的氨氮污染问题。该研究表明,碱性稀土硫酸盐和稀土氢氧化物可以在沉淀过程中产生,通过危险模型计算和氧化钙添加实验证明。更重要的是,在最佳降水条件下,稀土的沉淀效率为99.72%,稀土浓缩物的纯度为82.21%,稀土浓缩物中的SO 3含量高达13.44%,因为沉淀过程中碱性稀土硫酸盐的形成。为了减少SO 3含量,本文提出了用硫酸盐去除剂的沉淀富集的搅拌洗涤。硫酸盐除去剂的阴离子可以在搅拌洗涤过程中与硫酸盐离子竞争。结果,氢氧化钠可能是进一步详细研究的首选。用氢氧化钠洗涤沉淀富集,稀土浓缩物的纯度为88.03%,SO3含量分别为7.51%。因此,将在镁盐系统中从浸出液中稀土富集的非氨富集来提供可行的操作。本文的研究对于被风化的地壳洗脱稀土矿石和资源利用的提高,对环境友好的提取具有重要意义。

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