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Study on Energy Utilization of High Phosphorus Oolitic Haematite by Gas-Based Shaft Furnace Reduction and Electric Furnace Smelting Process

机译:煤基轴炉减速和电炉冶炼工艺能量利用研究高磷鲕粒盐酸盐

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Based on mass balance and heat balance calculation model, the energy utilization of pellet roasting, gas-based shaft furnace reduction and electric furnace smelting process of high phosphorus oolitic haematite was calculated, and the influence on energy consumption of the total process with different additives was investigated. Furthermore, the gas-based shaft furnace was divided into three parts, namely preheated zone, reduction zone and cooling zone. Taking chemical reactions that taken place in different parts, as well as roasting pellets and sponge iron with different temperatures into consideration, the relative mass balance and heat balance calculation model are established for energy analysis, which can provide a theoretical foundation for energy saving of gas-based shaft furnace reduction technology.
机译:基于质量平衡和热平衡计算模型,计算了高磷鲕粒卤素盐酸盐,天然气的轴炉减少和电炉冶炼过程的能量利用,对不同添加剂的总过程能耗的影响是调查。此外,将气体基轴炉分成三个部分,即预热区,还原区和冷却区。考虑到不同零件中发生的化学反应,以及焙烧颗粒和海绵铁,考虑不同的温度,建立了对能量分析的相对质量平衡和热平衡计算模型,可以为气体节能提供理论基础基于轴炉减少技术。

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