首页> 外文期刊>International Journal of Greenhouse Gas Control >Staged implementation of alternative processes in an existing integrated steel mill for improved performance and reduced CO2 emissions - Part I: Technical concept analysis
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Staged implementation of alternative processes in an existing integrated steel mill for improved performance and reduced CO2 emissions - Part I: Technical concept analysis

机译:在现有的集成钢厂中分阶段实施替代工艺以提高性能并减少CO2排放-第一部分:技术概念分析

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In this study, an alternative operational concept for the blast furnace has been evaluated for an integrated iron and steel mill. The integrated iron and steel mill evaluated was based on the blast furnace and basic oxygen furnace (BF + BOF) hot metal production route equipped with a gas boiler power plant for power production. The alternative assessed was increased pulverized coal injection (PCI) as reducing agent to the blast furnace. Accompanied with a higher rate of oxygen feed to the blast furnace, this reduces the coke consumption in the blast furnace and increases the blast furnace top gas calorific value. The increased calorific value enables combustion of the blast furnace top gas in a high efficiency gas turbine for power production. Combining this modified blast furnace concept with pre-combustion carbon capture will enable a reduction in the total CO2 emissions from the steel mill. Three concepts were evaluated: a modified blast furnace concept without carbon capture, a modified blast furnace concept with MEA-based pre-combustion CO2 capture and a modified blast furnace concept with Selexol-based pre-combustion CO2 capture. All cases were compared to an integrated iron and steel reference case based on the BF + BOF route. Results show that replacing part of the blast furnace coke with increased PCI injection and replacing the gas boiler with a high efficiency gas turbine significantly reduces total CO2 emissions (up to 1.8 Mt/a) from the steel mill. The modified concept imposes significant changes in electricity production on site and becomes an important factor for steel producers operating in the national grids. The different concepts can be implemented stage wise, minimizing the investment and technology risks. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在这项研究中,高炉的替代操作概念已针对钢铁综合厂进行了评估。评估的综合钢铁厂基于高炉和碱性氧气炉(BF + BOF)铁水生产路线,并配有燃气锅炉发电厂进行发电。评估的替代方法是增加煤粉喷射(PCI)作为高炉的还原剂。伴随着高炉氧气进料速率的增加,这减少了高炉中的焦炭消耗并增加了高炉炉顶煤气的热值。增加的热值使高炉炉顶气体能够在高效燃气轮机中燃烧以发电。将这种改进的高炉概念与燃烧前的碳捕集相结合,可以减少钢厂的总二氧化碳排放量。评估了三个概念:没有碳捕获的改进高炉概念,具有基于MEA的预燃烧CO2捕获的改进高炉概念以及具有Selexol基于预燃烧的CO2捕获的改进高炉概念。将所有案例与基于BF + BOF路线的钢铁参考案例进行了比较。结果表明,用增加的PCI喷射量代替高炉焦炭的一部分,并用高效的燃气轮机代替燃气锅炉,可显着降低钢厂的总CO2排放量(最高1.8 Mt / a)。修改后的概念对现场的电力生产产生了重大变化,并成为在国家电网中运营的钢铁生产商的重要因素。可以分阶段实施不同的概念,从而最大程度地减少投资和技术风险。 (C)2015 Elsevier Ltd.保留所有权利。

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