Rare-earth leaching from Florida phosphate rock in wet-process phosphoric acid production

Q2 Materials Science Minerals & Metallurgical Processing Pub Date : 2017-08-01 DOI:10.19150/MMP.7615
H. Liang, P. Zhang, Z. Jin, D. DePaoli
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引用次数: 23

Abstract

Phosphorite, or phosphate rock, is the most significant secondary rare-earth resource. It contains high amounts of phosphate-bearing minerals along with low contents of rare earth elements (REEs). In Florida, about 19 Mt of phosphate rock are mined annually and most are used to manufacture fertilizers using a wet process, in which sulfuric acid reacts with phosphates to produce phosphoric acid and phosphogypsum. In the wet process, REEs are also leached out into solution and eventually get lost in the leaching residue and phosphate fertilizer. Recovering REEs from Florida phosphate rock in the wet process will be beneficial to broadening rare-earth availability, improving the quality of phosphoric acid product and protecting the environment.This study focuses on the influences of wet-process operating conditions on REE leaching efficiency. The results indicate that REE leaching efficiency increases with phosphoric acid addition in the initial pulp. At a temperature of 75 °C, a stoichiometric ratio of sulfuric acid (H2 SO4) to calcium oxide (CaO) of 1.05 and a weight ratio of liquid to solid of 3.5, REE leaching efficiency reached a relatively high value of 52.82 percent. The trends of REE leaching efficiency were similar to those for phosphoric acid (P2O5). Extensive tests on the leaching residue showed that during leaching, about 90 percent of the REEs were released from the phosphate rock but only 52.82 percent ended up in the leaching solution. This phenomenon can be attributed to two factors: (1) the effect of phosphate ions (PO43-) in the solution, which caused REE ions to form REE phosphates and be precipitated into the leaching residue, and (2) the influence of large amounts of anions such as sulfate (SO42-), dihydrogen phosphate (H2 PO4-) and hydrogen phosphate (HPO42-) anions as well as the polar molecule H3 PO4, which surrounded the REE cations and formed an ion atmosphere that prevented the PO43- from contacting and combining with REE cations. Interaction of these two opposite effects determined the REE distribution between leaching solution and residue.
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湿法磷酸生产中佛罗里达磷矿的稀土浸出
磷矿是最重要的二次稀土资源。它含有大量的含磷酸盐矿物以及低含量的稀土元素(REEs)。在佛罗里达州,每年开采约1900万吨磷矿,其中大部分用于湿法生产肥料,其中硫酸与磷酸盐反应产生磷酸和磷石膏。在湿法过程中,稀土元素也被浸出到溶液中,最终消失在浸出渣和磷肥中。采用湿法从佛罗里达磷矿中回收稀土,有利于拓宽稀土供应,提高磷酸产品质量,保护环境。研究了湿法操作条件对稀土浸出效率的影响。结果表明:初始矿浆中加入磷酸,稀土浸出效率提高;在温度为75℃、硫酸(H2 SO4)与氧化钙(CaO)的化学计量比为1.05、液固质量比为3.5的条件下,稀土浸出效率达到52.82%的较高值。稀土元素浸出效率的变化趋势与磷酸(P2O5)相似。对浸出渣的大量测试表明,在浸出过程中,约90%的稀土元素从磷矿中释放出来,但只有52.82%的稀土元素最终进入浸出液。这种现象可以归结为两个因素:(1)溶液中磷酸离子(PO43-)的作用,使REE离子形成REE磷酸盐沉淀到浸出渣中;(2)硫酸盐(SO42-)、磷酸二氢(H2 PO4-)、磷酸氢(HPO42-)等大量阴离子以及极性分子H3 PO4的影响,将REE阳离子包围,形成离子气氛,阻止PO43-与REE阳离子接触结合。这两种相反作用的相互作用决定了浸出液和渣中稀土元素的分布。
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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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