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Predictcion of Next-Generation Ironmaking Process Based on Oxygen Blast Furnace Suitable for CO2 Mitigation and Energy Flexibility

机译:基于CO 2 缓解和能量灵活性的氧气高炉的下一代炼铁工艺预测

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In the integrated steel works, huge quantities of coal and other fossil materials are consumed as reducing agents and energy resources. The steel industry must now deeply reexamine its utilization of carbon and energy from the viewpoints of global warming and energy security. Against this background, this paper focuses on the progressive design of an ambitious blast furnace for the future.Several blast furnace processes including the current blast furnace and the oxygen blast furnace were examined by using a material and energy balance model of the integrated steel works. First, the current blast furnace was evaluated considering expanded use of hydrogen-rich injectants. Next, the oxygen blast furnace with top gas recycling was examined, and the characteristics of the carbon and energy balances were clarified from the viewpoints of CO_(2) mitigation and the energy balance in the steel works as a whole. Although the results confirmed that CO_(2) emissions can be reduced by intensifying top gas recycling, the energy supply to the downstream processes became seriously insufficient.Then, the applicability of an oxygen blast furnace with a high injection rate of a hydrogen-rich gas such as natural gas instead of top gas injection was evaluated. This process, thanks to the intensified hydrogen reduction, enables the CO_(2) mitigation while maintaining the energy balance in the steel works. Based on the evaluation, the concept of the advanced oxygen blast furnace as a next-generation low carbon blast furnace with high energy flexibility was proposed.
机译:在综合钢铁厂中,大量的煤炭和其他化石材料被用作还原剂和能源。从全球变暖和能源安全的角度来看,钢铁行业现在必须深刻地重新审查其对碳和能源的利用。在此背景下,本文着眼于未来的高炉设计。通过综合钢铁厂的材料和能量平衡模型,研究了包括当前高炉和氧气高炉在内的几种高炉工艺。首先,对目前的高炉进行了评估,考虑到了富氢喷射剂的广泛使用。接下来,研究了具有顶部气体再循环的氧气高炉,并从减少CO_(2)和整个钢厂的能量平衡的角度阐明了碳和能量平衡的特征。尽管结果证实可以通过加强炉顶气体的再循环来减少CO_(2)的排放,但对下游工艺的能源供应却变得严重不足。如天然气,而不是顶部气体注入进行了评估。由于加强了氢的还原,此过程可以减轻CO_(2)的影响,同时保持钢铁厂的能量平衡。在评估的基础上,提出了先进的氧气高炉作为具有高能量灵活性的下一代低碳高炉的概念。

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