Elaboration of an environmentally appropriate technology of siderite ores concentration

Удк, Разработка Экологически, Чистой Технологии Обогащения, Сидеритовых Руд
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引用次数: 1

Abstract

Decrease of iron content in siderite ores, mined in mines stipulated a necessity to elaborate technologies of their concentration, which allow increasing iron content at least 35%. As a result of analysis of existing technologies of minerals concentration it was determined, that X-ray radiometric method is the most promising one for siderite ores concentration. Its essence is in a controlled supply of lump material of definite size, distribution of lump flows by streams and by the piece supply of ore lumps into analysis-division zone, in which the X-ray fluorescent analysis of main chemical elements takes place. Special microprocessor means of the measuring-control system make comparison of measuring results with the set threshold of separation and make decisions to direct the particular piece to one of the grading product. As the result, the particular piece comes to a chute either with rich product or by free fall comes to the chute of poor product. Tests of the technology of lump siderite ore separation accomplished by using industrial X-ray radiometric separators. Influence of ore size on the concentration process indices studied. It was determined, that at implementation the X-ray radiometric method of separation it is reasonable to limit by machine classes of 250– 100 mm and 100–30 mm. A technological flowchart proposed to provide the concentrate obtaining with the size of 30–10 mm and iron content of 35%. The concentrate can be used for reducing roasting of it in shaft furnaces. The formed screenings after concentration in the high intensity fields were proposed to subject to metallization in the rotating furnaces or rotating hearth furnaces. The metallized product can be smelted in an ore-thermal furnace to obtain steel semi-product used in large-scale EAF.
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阐述一种适合环境的菱铁矿选矿技术
在矿山中开采的菱铁矿中铁含量下降,要求有必要制定选矿工艺,使铁含量至少提高35%。通过对现有选矿技术的分析,认为x射线法是最有前途的菱铁矿选矿技术。其实质是有控制地供应一定粒度的块状物料,块状流按流分布,块状矿体按块状供应进入分析区,在分析区进行主要化学元素的x射线荧光分析。测控系统的专用微处理器可以将测量结果与设定的分离阈值进行比较,并做出决定,将特定的工件引导到分级产品之一。其结果是,特定的部分进入一个滑道或丰富的产品或自由落体进入一个滑道的不良产品。用工业x射线辐射分离机完成块状菱铁矿矿石分离技术试验。研究了矿石粒度对选矿过程指标的影响。确定了在实施x射线放射分离方法时,以250 - 100 mm和100 - 30 mm的机器级别限制是合理的。提出了精矿粒度为30 ~ 10mm,铁含量为35%的工艺流程。该精矿可用于竖炉还原焙烧。提出了在高强度场集中后形成的筛分,在转炉或转底炉中进行金属化处理。金属化后的产品可以在矿热炉中熔炼,得到用于大型电炉的钢铁半成品。
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