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A novel process for recovery of rare earth and fluorine from bastnaesite concentrates. Part I: calcification roasting decomposition

机译:一种从菱镁矿精矿中回收稀土和氟的新方法。第一部分:钙化焙烧分解

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摘要

Environmental pollution and valuable resource waste exist commonly in current metallurgical processes of bastnaesite concentrates. A novel associated process of calcification roasting, mineral beneficiation and acid leaching was proposed. This paper focused on the prior calcification roasting decomposition procedure. By studying the influence of roasting conditions on cerium oxidation, the optimum technology conditions were obtained: operated at 650 degrees C for 60 min with 20% calcium hydroxide. After roasting, the leaching rate of rare earths can reach 98.84%. Bastnaesite can be sufficiently decomposed at lower temperature with calcium hydroxide added and the emission rate of fluorine decreased by over 98% compared with that during the roasting without additives. After the roasting, the main existence form of fluorine turned calcium fluoride, which made it possible for resource utilization and environmental protection. Particle sizes and scanning electron microscope and energy dispersive spectrometer analyses indicated that rare earth oxides gathered in particles of >48 mu m, while generated calcium fluoride with fluffy cotton morphology distributed evenly.
机译:在当前的镁橄榄石精矿的冶金过程中普遍存在环境污染和有价值的资源浪费。提出了钙化焙烧,矿物选矿和酸浸的一种新的相关过程。本文着重于先有的钙化焙烧分解程序。通过研究焙烧条件对铈氧化的影响,获得了最佳工艺条件:在650摄氏度,20%氢氧化钙条件下操作60分钟。焙烧后,稀土的浸出率可达到98.84%。与不含添加剂的焙烧过程相比,添加氢氧化钙可以在较低的温度下充分分解马氏体,氟的排放率降低了98%以上。焙烧后,氟的主要存在形式变成了氟化钙,这使得资源利用和环境保护成为可能。粒度,扫描电子显微镜和能谱仪分析表明,稀土氧化物聚集在> 48μm的颗粒中,同时生成了绒毛状棉花形态均匀分布的氟化钙。

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