巴加尔矿菱铁矿选矿工艺的改进

Е. Degodya, N. Sedinkina, О. Shavakuleva, N. Gmyzina
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摘要

乌拉尔是世界上独一无二的铁矿石大省之一,铁矿石品种齐全。菱铁矿矿石以Bakal组矿床为代表,其中的菱铁矿在矿物学上不是化学上纯的碳酸铁,而是镁和钙的同构混合物,形成了菱铁矿和石铁矿。该矿床菱铁矿矿石的主要铁矿物为铁、镁、锰碳酸盐的同构混合物,它们以不同的量比赋存。提出了一种选矿方案,即在52 k/m的磁场强度下,破碎至10 ~ 0 mm,在悬浮状态下进行干式磁选。在恒磁场悬浮选机和138T-SEM电磁选机上进行了菱铁矿干式磁选试验研究。产生的磁分选后送至焙烧,破碎至2-0 mm粒度,在悬浮状态下进行干式磁选。为提高铁的质量分数,降低氧化镁的质量分数,将磁性分选后送磨后湿式磁选。实验结果表明:采用强干式磁选对该矿各剖面菱铁矿进行富集后,MgO质量分数由9.4 ~ 12.3%下降至8.0 ~ 10.1%,铁质量分数由28.8 ~ 33.4%上升至31.4 ~ 40.8%。得到了铁质量分数为59.3 ~ 60.1%,氧化镁质量分数为10.0 ~ 11.3%的产品。开发的浓缩技术使我们能够获得条件原料,这些原料可以作为PJSC马格尼托戈尔斯克钢铁厂(PJSC MMK)的有前途的原料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improvement of the technology for processing siderite ore from the Bakal deposit
The Urals is one of the unique iron ore provinces of the world, including all the variety of iron ores. Siderite ores are represented by the Bakal group of deposits, in which siderite in mineralogical terms is not a chemically pure iron carbonate, but has an isomorphic admixture of magnesium and calcium, forming sideroplesite and pistomesite. The main iron ore mineral of the siderite ore of this deposit is an isomorphic mixture of iron, magnesium and manganese carbonates, which occur in different quantitative ratios. A scheme for ore dressing is proposed, which includes crushing to a size of 10-0 mm and dry magnetic separation in a suspended state at a magnetic field strength of 52 k/m. The study of dry magnetic separation of siderite ore was carried out on a suspended separator with a constant magnetic field and on an electromagnetic separator 138T-SEM. The resulting magnetic fraction is sent to the baking, subsequent crushing to a size of 2-0 mm and dry magnetic separation in the suspended state. To increase the mass fraction of iron and reduce the mass fraction of magnesium oxide, the magnetic fraction is sent for grinding and wet magnetic separation. The results of the experiments have showed that the enrichment using high-intensity dry magnetic separation of siderite ore from various sections of the deposit, the mass fraction of MgO decreased from 9.4-12.3% to 8.0-10.1%, and the mass fraction of iron increased from 28.8-33.4% to 31.4-40.8%. As a result, a product with a mass fraction of iron 59.3-60.1% and magnesium oxide 10.0-11.3% has been obtained. The developed enrichment technology allows us to obtain conditioned raw materials, which can serve as a promising raw material for PJSC Magnitogorsk Iron and Steel Works (PJSC MMK)
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