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Optimization of Top Gas Recycling Conditions under High Oxygen Enrichment in the Blast Furnace

机译:高炉富氧条件下顶部气体循环条件的优化

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Primary steelmaking is among the most energy intensive industrial processes in the world and being mainly coal-based it substantially contributes to the global fossil CO_(2) emissions. It is therefore important to study potential ways of suppressing the use of fossil reductants and the rate of emissions in the process. This paper analyzes by simulation and optimization the concept of recycling CO_(2)-stripped top gas in the blast furnace under massive oxygen enrichment, and its impact on the production economy and emissions of the steel plant. The effect of CO_(2) emissions and stripping/storage costs on the optimal states is presented. The system studied is demonstrated to exhibit complex transitions between the optimal states. The findings throw light on the importance of selecting a proper state of operation for achieving a cost-efficient production of steel with reduced environmental impact.
机译:初级炼钢是世界上能源消耗最大的工业过程之一,主要以煤炭为基础,因此对全球化石的CO_(2)排放做出了重要贡献。因此,重要的是研究抑制化石还原剂的使用和过程中排放速率的潜在方法。本文通过模拟和优化分析了富氧条件下高炉中CO_(2)汽提塔顶气的回收利用概念及其对钢厂生产经济性和排放的影响。提出了CO_(2)排放和汽提/存储成本对最佳状态的影响。所研究的系统被证明在最佳状态之间表现出复杂的过渡。该发现揭示了选择适当的操作状态以实现具有成本效益的钢生产并减少环境影响的重要性。

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