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Towards CO_2-neutral process heat generation for continuous reheating furnaces in steel hot rolling mills-A case study

机译:钢铁热轧机中连续再加热炉的CO_2 - 中性工艺发热 - 一种案例研究

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The aim of a massive reduction of CO2-emissions results in a move away from fossil fuels. In the hot strip production of steel, almost exclusively gas-fired furnaces are currently used due to the lower energy costs. On the contrary, it is imperative to convert existing fossil heated processes to CO2-free (green) technologies in the context of the energy-transition. Obvious alternatives are electrical heating or hydrogen combustion, both strongly dependent on the specific electricity generation mix that de-termines the CO2-emissions. In this case study, different process heat generation options for continuous reheating furnaces in steel hot rolling mills are discussed by a quantitative approach. A state-of-the-art reheating furnace fired with natural gas is used as reference case, while electrical heating, hydrogen-air heating and hydrogen-oxygen heating are the alternatives investigated. The energy balances, the primary energy consumption and the resulting CO2-emissions are compared for the three countries of France, Poland and Germany with regard to the country-specific electricity generation mix. Additionally, the possible development until 2050 is analysed. The results show the high impact of continuous reheating furnaces in steel hot rolling mills on the total CO2-emissions of downstream steel processing. Further-more, the massive increase in electrical energy consumption of the whole steel production process is highlighted. Each investigated alternative shows a significant potential to save CO2-emissions, depending on the country specific electricity generation mix and the future expansion of renewable energy sources. An increase in H-2-production efficiency will both lead to a lower primary energy consumption and lower CO2-emissions for reheating furnaces. (C) 2021 Elsevier Ltd. All rights reserved.
机译:巨大减少二氧化碳排放的目的导致远离化石燃料的速度。在钢的热带生产中,由于能源成本较低,目前使用几乎完全燃气炉。相反,在能量转换的背景下,必须将现有的化石加热过程转化为FO2-无二氧化碳(绿色)技术。明显的替代品是电加热或氢燃烧,两者都强烈取决于解除二氧化碳排放的特定发电混合。在这种情况下,通过定量的方法讨论了钢热轧机中连续再加热炉的不同工艺发热选项。用天然气烧制的最先进的再加热炉用作参考情况,而电加热,氢气加热和氢气加​​热是研究的替代品。与法国三个国家,波兰和德国关于国家专用发电组合的三国进行了比较了能量余额,主要能量消耗和由此产生的二氧化碳排放。另外,分析了可能的发展直到2050。结果表明,在下游钢加工总二氧化碳排放中的钢热轧机中的连续再加热炉在钢热轧机中的高影响力。此外,突出了整个钢铁生产过程的电能消耗的大规模增加。每个调查的替代方案都表现出拯救二氧化碳排放的显着潜力,具体取决于国家特定发电组合和可再生能源的未来扩大。 H-2生产效率的增加将导致较低的初级能耗和用于再加热炉的二氧化碳排放量。 (c)2021 elestvier有限公司保留所有权利。

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