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Enhancement of Iron Ore Sinter Reducibility through Coke Oven Gas Injection into the Modern Blast Furnace

机译:通过向现代高炉中注入焦炉气来提高铁矿石烧结矿的还原性

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Energy network within the integrated steel works should be used more efficiency to reduce the energy consumptions and CO_(2) emissions. The injection of free resources of coke oven gas (COG), which is rich with hydrogen, into the modern blast furnace is one of such measures. In order to clarify the effect of COG injection on the reduction processes in the blast furnace; iron ore sinter was isothermally and non-isothermally reduced with different gas compositions at different temperature. The gas compositions were selected to simulate the conditions of middle (150 m~(3)/tHM) and intensive (300 m~(3)/tHM) injection of COG into the blast furnace. The results were compared to that obtained under typical blast furnace conditions without COG injection. The isothermal reduction at 900–1200°C indicated the enhancement of the reduction rate as COG injection increased. The non-isothermal reduction indicated the efficiency of intensive injection of COG in decreasing the direct reduction from 50% to only 5% at 1200°C. Reflected light microscopy, scanning electron microscopy and X-ray techniques were used to characterize the microstructure and the developed phases in the origin and reduced sinter. The rate controlling mechanism of sinter under different conditions was predicted from the correlation between apparent activation energy calculations and microstructure examination.
机译:综合钢铁厂内的能源网络应更有效地利用,以减少能源消耗和CO_(2)排放。这样的措施之一就是向现代高炉中注入富含氢的焦炉煤气(COG)的自由资源。为了阐明COG注入对高炉还原过程的影响;在不同温度下,用不同的气体组成等温和非等温还原铁矿烧结矿。选择气体成分以模拟将COG注入高炉的中间(150 m〜(3)/ tHM)和密集(300 m〜(3)/ tHM)的条件。将结果与在没有注入COG的典型高炉条件下获得的结果进行了比较。 900–1200°C的等温降低表明,随着COG注入量的增加,降低率的提高。非等温还原表明在1200°C时强力注入COG可以将直接还原率从50%降低到仅5%。反射光显微镜,扫描电子显微镜和X射线技术被用来表征显微组织和原始和还原烧结矿中已形成的相。通过表观活化能的计算与显微组织检查之间的相关性,预测了不同条件下烧结矿的速率控制机理。

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