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Leaching and recovery of phosphate and rare earth elements from an iron rich fluorapatite concentrate: Part II: Selective leaching of calcium and phosphate and acid baking of the residue

机译:富含铁富含氟代铝矿石浓缩物的磷酸盐和稀土元素的浸出和恢复:第II部分:钙和磷酸盐的选择性浸出和残留物的酸烘烤

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摘要

Apatite concentrate is an important source of phosphate and contains significant amounts of rare earth elements (REEs). In this study, the possibility of selective phosphoric acid leaching of phosphate and calcium from the Esfordi (Yazd province, Iran) apatite concentrate, containing 16.3% phosphorus, 37.1% calcium, 2.9% iron and 1.2% REEs was investigated. REEs concentrated in the leaching residue were processed using acid baking and bicarbonate precipitation methods. In the phosphoric acid leaching process, almost all the Ca and phosphate of the concentrate were leached from the concentrate, whereas only about 1% of the REEs were leached. By leaching the concentrate with 25% phosphoric acid at 90 degrees C and 1200 rpm, a residue containing 17.5% REEs, 4.8% phosphorus and 28.5% iron was obtained. The residue was acid baked, water leached and processed for removal of iron and recovery of REE5. Acid baking at 270 degrees C with acid to solid ratio of 2 (w/w) for 5 h led to 95% leaching of REEs. By increasing the pH of the leachate to 3.9, all the iron and phosphate were precipitated within 2 h. Finally, REEs were precipitated from the iron-free solution by using the bicarbonate precipitation method, and a product containing 39% of total REEs was produced. The results demonstrate that the three-stage process is an elegant method for processing of the Esfordi concentrate to produce phosphoric acid and an iron-free REE carbonate concentrate.
机译:磷灰石浓缩物是磷酸盐的重要来源,含有大量的稀土元素(REES)。在这项研究中,研究了磷酸盐和钙的选择性磷酸浸出的可能性,含有16.3%磷,37.1%钙,2.9%铁和1.2%REES的磷灰石浓缩物。使用酸烘焙和碳酸氢盐沉淀方法加工集中在浸出残留物中的REEE。在磷酸浸出过程中,几乎所有浓缩物的Ca和磷酸盐从浓缩物中浸出,而只有约1%的REES被浸出。通过在90℃和1200rpm下用25%磷酸浸出浓缩物,获得含有17.5%REES,4.8%磷和28.5%铁的残余物。残余物是酸烘焙,水浸出并加工以除去铁和REE5的回收。在270℃下酸烘烤,酸至固体比例为2(w / w),5小时导致Rees的95%浸出。通过将渗滤液的pH增加至3.9,所有的铁和磷酸盐在2小时内沉淀。最后,通过使用碳酸氢盐沉淀法从无铁溶液中沉淀出REES,并制备含有39%的总重量的产物。结果表明,三阶段方法是用于加工Esfordi浓缩物以产生磷酸和无铁碳酸盐浓缩物的优雅方法。

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