Rare earths recovery and gypsum upgrade from Florida phosphogypsum

Q2 Materials Science Minerals & Metallurgical Processing Pub Date : 2017-11-01 DOI:10.19150/MMP.7860
H. Liang, P. Zhang, Z. Jin, D. DePaoli
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引用次数: 32

Abstract

Phosphogypsum is a byproduct created during the production of industrial wet-process phosphoric acid. This study focused on recovering rare earth elements (REEs) from a Florida phosphogypsum sample and investigated the effects of removing detrimental impurities such as phosphorus pentoxide (P2O5), uranium (U) and fluorine (F) during the leaching process. Experimental results indicated that REE leaching efficiency increased rapidly, reached a maximum and then began to decrease with sulfuric acid concentrations ranging from 0 to 10 percent and temperatures ranging from 20 to 70 °C. At a sulfuric acid concentration of 5 percent and leaching temperature of 50 °C, REE leaching efficiency obtained a maximum value of approximately 43 percent. Increasing the leaching time or liquid/solid ratio increased the leaching efficiency. The leaching efficiencies of P2O5, U and F consistently increased with sulfuric acid concentration, temperature, leaching time and liquid/solid ratio within the testing ranges. A fine-grain gypsum concentrate, sized smaller than 40 µm, was separated from leached phosphogypsum through elutriation, in which the P2O5, U and F content levels were reduced by 99, 70 and 83 percent, respectively, from their content levels in fresh phosphogypsum.
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从佛罗里达磷石膏中回收稀土和提升石膏
磷石膏是工业湿法磷酸生产过程中产生的副产品。本研究的重点是从佛罗里达磷石膏样品中回收稀土元素,并研究了在浸出过程中去除有害杂质如五氧化二磷(P2O5)、铀(U)和氟(F)的效果。实验结果表明,在0~10%的硫酸浓度和20~70°C的温度范围内,稀土元素浸出效率迅速提高,达到最大值后开始下降。在5%的硫酸浓度和50°C的浸出温度下,REE的浸出效率最高约为43%。增加浸出时间或液固比可提高浸出效率。在试验范围内,P2O5、U和F的浸出效率随着硫酸浓度、温度、浸出时间和液固比的增加而不断提高。通过淘析从浸出的磷石膏中分离出尺寸小于40µm的细粒石膏精矿,其中P2O5、U和F的含量水平分别比新鲜磷石膏中的含量水平降低了99%、70%和83%。
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来源期刊
Minerals & Metallurgical Processing
Minerals & Metallurgical Processing 工程技术-矿业与矿物加工
CiteScore
0.84
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: For over twenty-five years, M&MP has been your source for the newest thinking in the processing of minerals and metals. We cover the latest developments in a wide range of applicable disciplines, from metallurgy to computer science to environmental engineering. Our authors, experts from industry, academia and the government, present state-of-the-art research from around the globe.
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