棕泥铁矿及其精矿的热磁富集与脱磷

Q3 Materials Science
A. Mukhtar, M. K. Mukhymbekova, A. Makashev, V. N. Savin
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引用次数: 2

摘要

鲕状棕泥铁矿石因其在世界上的巨大储量而具有重要的经济意义。然而,目前它们在冶金生产中的应用受到严重限制,因为它们中磷的含量很高。从这些矿石中提取磷的过程几乎不能用已知的富集方法来实现,因为磷以乳化和浸渍的状态存在于鲕粒中,在这种情况下没有形成独立的矿物。因此,使用给定类型的矿石是非常有限的。此时世界钢铁产量的增长大大增加了对铁矿石的需求,因此,在过去的几十年里,世界上为创造新的棕色粘土铁矿石制造计划做出了相当大的努力,以获得标准的铁矿石精矿。哈萨克斯坦丰富且易选矿的铁矿石大量减少,导致有必要在冶金生产中吸引利萨科夫斯克、阿亚特、普里亚拉尔等地易开采的鲕状棕泥铁矿石的巨大资源,铁含量在35%至40%之间,磷含量高达1%。热磁选矿技术是目前最具可持续性和可接受的褐铁矿脱磷技术。该工艺的实质是用液态烃还原剂(LHR)进行再生,对精矿进行催眠焙烧,焙烧后的原料接受磁化精矿进行磁浓缩,然后用酸浸法对所得精矿进行脱磷。在试点条件下,对利萨科夫斯克精矿和Ayat和Kokbulak油田的矿石进行了有代表性的取样,对这项技术进行了测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermomagnetic concentration and dephosphorizing of brown clay iron ore and concentrates
Oolitic brown clay iron ores are of prime economic importance because of their enormous stocks in the world. However, their use in metallurgical production is very severely limited at the present time because of the high content of phosphorus in them. The process of phosphorus extracting from these ores almost cannot be realized by the known enrichment methods, since phosphorus presents in oolites in the emulsionated and impregnated state, without forming the independent minerals in this case. Therefore, using of ores of the given type is very limited. Growth of the world steel production at this time has considerably increased demand for iron ore, for that reason in the last decades in the world there were made considerable efforts on creation of new manufacturing schemes of brown clay iron ores obtaining standard iron ore concentrates. Considerable reduction of rich and easily beneficiated iron ores in Kazakhstan results in necessity to attract in metallurgical production the huge resources of the easily extracted ooli tic brown clay iron ores of Lissakovsk, Ayat, Priaral, and other fields with the iron content from 35 to 40  % and phosphorus up to 1  %. The technology of thermomagnetic beneficiation is represented as the most self-sustainable and acceptable dephosphorizing technology of brown limonites. The essence of the technology consists in the reproduction by liquid hydrocarbon reducer (LHR), mesmerizing roasting of the concentrate, magnetic concentration of the roasted raw material receiving the magnetic concentrate with the subsequent dephosphorizing of the obtained concentrate by the acid leaching method. The technology was tested in pilot conditions by representative samplings of the Lissakovsk concentrate and the ores of Ayat and Kokbulak fields.
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来源期刊
Izvestiya Vysshikh Uchebnykh Zavedenij. Chernaya Metallurgiya
Izvestiya Vysshikh Uchebnykh Zavedenij. Chernaya Metallurgiya Materials Science-Materials Science (miscellaneous)
CiteScore
0.90
自引率
0.00%
发文量
81
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