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Mechanical enrichment of converted spodumene by selective sieving

机译:选择性筛分改造转化的太灭烟剂的机械富集

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Spodumene ore can be concentrated in large particle size of 1-6 mm by a dense media separation (DMS) process. The concentrate typically contains relatively large amounts of impurities due to the incomplete liberation of spodumene and the quite narrow density difference between spodumene and gangue minerals. The extraction of lithium from spodumene requires the phase transformation of spodumene from alpha- to beta-form which takes place at 1100 degrees C. After heat treatment the Li2O content of spodumene concentrate can be improved by particle size separation. In this work the technical and economical possibilities of producing first low grade concentrates by DMS method and increasing the grade afterwards by particle size separation were studied. Various DMS spodumene concentrates were mechanically enriched after heat treatment by selective sieving. Autogenous and ball mill grinding were used to increase the separation efficiency between the spodumene and the gangue minerals. The Li2O contents of the concentrates were increased from 5.1%, 3.6%, 3.1% and 1.4% to 6.8%, 5.8%, 5.9% and 5.0%, respectively. The energy economy of the sieving method was evaluated from the perspective of increased energy consumption in the heat treatment process. (C) 2016 Elsevier Ltd. All rights reserved.
机译:通过致密介质分离(DMS)工艺,Spodumene Ore可以浓缩1-6mm的大粒径。浓缩物通常含有相对大量的杂质,由于脱氨烯的不完全释放和锭剂和甘蓝矿物质之间的密度差异相当窄。来自脱淀的锂的萃取需要在1100℃下进行α-至β-形式的脱氧丁烯的相变。热处理后,通过粒度分离可以提高脱丁烯浓缩物的Li2O含量。在这项工作中,研究了通过DMS方法生产第一低级浓缩物的技术和经济性,并通过粒度分离增加后方的等级。通过选择性筛分在热处理后机械富集各种DMS鸟丁烯浓缩物。自动和球磨机研磨用于增加脱氨烯和甘蓝矿物质之间的分离效率。浓缩物的Li 2 O含量从5.1%增加到5.1%,3.6%,3.1%和1.4%,分别为6.8%,5.8%,5.9%和5.0%。从热处理过程中的能耗增加的角度来评估筛分方法的能量经济。 (c)2016 Elsevier Ltd.保留所有权利。

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