东南安纳托利亚赤铁矿和褐铁矿浓缩及微波还原生产

Yıldırım İsmail Tosun
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引用次数: 1

摘要

采用洗矿还原法对低品位铁矿资源进行了富集评价。东南安纳托利亚资源低品位褐铁矿和赤铁矿的先进富集方法都需要这样的专门方法。对赤铁矿泥和褐铁矿砂矿进行了后续柱浮选—磁选、微波辐射还原的潜在还原性处理。沸腾流化床允许更多的时间进行热辐射和传导,以还原为电阻性ıron化合物。此外,重褐铁矿和氧化铁通过鼓泡流化床表面气孔使煤与生物质有充分的密切接触,这是由于更多的热解气体解吸。气泡浴孔隙率随温度降低而降低。本研究将劣质赤铁矿和褐铁矿在微波炉中进行微波还原,但通过较小的管道流作为烧结竖井,进行柱浮选和扫选操作。在新的烧结厂,两个主要阶段仍然可以管理预期的预还原颗粒和球团生产。在能源方面,人们可以在世界各地的先进技术工厂生产还原铁矿石。而对于褐铁矿、菱铁矿等品位较低的铁矿,人们认为采用微波还原技术可以降低冶炼厂的能耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Concentration and Microwave Radiated Reduction of Southeastern Anatolian Hematite and Limonite Ores—Reduced Iron Ore Production
The concentration of low grade iron ore resources was evaluated by washing and reduction. The advanced concentration methods for low grade limonite and hematite iron ores of South Eastern Anatolian resources required such specific methods. The followed column flotation and magnetic separation, microwave radiated reduction of hematite slime and limonite sand orewere investigated on potential reducing treatment. The bubling fluidized bed allows more time to the heat radiation and conduction for reducing to the resistive ıron compounds. Furthermore, heavy limonite and iron oxide allowed sufficient intimate contact coal and biomass through surface pores in the bubbling fluidized bed furnace due to more pyrolysis gas desorption. Bubbling bath porosity decreased by temperature decrease. This research was included reduction in microwave of poor hematite and limonite ores in the microwave ovens, but through smaller tubing flows as sintering shaft plants following column flotation and scavangering operation. Two principle stages could still manage prospective pre reduction granule and pellet production in new sintering plants. There is a lack of energy side which one can produce reduced iron ore in advanced technology plants worldwide. However, for the low grade iron ores such as limonite and sideritic iron ores it was thought that microwave reduction technique was assumed that this could cut energy consumption in the metallurgy plants.
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