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首页> 外文期刊>Energy efficiency >Effects on global CO2 emissions when substituting LPG with bio-SNG as fuel in steel industry reheating furnaces-the impact of different perspectives on CO2 assessment
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Effects on global CO2 emissions when substituting LPG with bio-SNG as fuel in steel industry reheating furnaces-the impact of different perspectives on CO2 assessment

机译:在钢铁工业加热炉中用生物-SNG代替LPG燃料对全球CO2排放的影响-不同观点对CO2评估的影响

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The iron and steel industry is the second largest user of energy in the world industrial sector and is currently highly dependent on fossil fuels and electricity. Substituting fossil fuels with renewable energy in the iron and steel industry would make an important contribution to the efforts to reduce emissions of CO2. However, different approaches to assessing CO2 emissions from biomass and electricity use generate different results when evaluating how fuel substitution would affect global CO2 emissions. This study analyses the effects on global CO2 emissions when substituting liquefied petroleum gas with synthetic natural gas, produced through gasification of wood fuel, as a fuel in reheating furnaces at a scrap-based steel plant. The study shows that the choice of system perspective has a large impact on the results. When wood fuel is considered available for all potential users, a fuel switch would result in reduced global CO2 emissions. However, applying a perspective where wood fuel is seen as a limited resource and alternative use of wood fuel is considered, a fuel switch could in some cases result in increased global CO2 emissions. As an example, in one of the scenarios studied, a fuel switch would reduce global CO2 emissions by 52 ktonnes/year if wood fuel is considered available for all potential users, while seeing wood fuel as a limited resource implies, in the same scenario, increased CO2 emissions by 70 ktonnes/year. The choice of method for assessing electricity use also affects the results.
机译:钢铁行业是世界第二大能源用户,目前高度依赖化石燃料和电力。用钢铁行业的可再生能源代替化石燃料将为减少二氧化碳排放量做出重要贡献。但是,在评估燃料替代将如何影响全球CO2排放时,评估生物质和电力使用产生的CO2排放的不同方法会产生不同的结果。这项研究分析了将废液化的石油气替换为通过将木质燃料气化产生的合成天然气作为废钢厂的加热炉中的燃料而对全球CO2排放的影响。研究表明,系统视角的选择对结果有很大的影响。当认为所​​有潜在用户都可以使用木燃料时,更换燃料将导致全球CO2排放量减少。但是,从将木材燃料视为一种有限的资源并考虑使用木材燃料的角度出发,在某些情况下更换燃料可能会导致全球CO2排放量增加。举例来说,在所研究的一种情况下,如果认为所有潜在用户都可以使用木质燃料,那么燃料转换将使全球CO2排放量每年减少52吨,而在同一情况下,将木质燃料视为一种有限的资源,每年将二氧化碳排放量增加70吨。评估用电量的方法的选择也会影响结果。

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