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Using Biomass for Pig Iron Production: A Technical, Environmental and Economical Assessment

机译:利用生物质生产生铁:技术,环境和经济评估

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摘要

The classical route for iron- and steel-making today is based on massive use of fossil coal, which is responsible for most of the large CO_2 emissions of the steel industry. Biomass, as a renewable carbon resource, is a good candidate to substitute for fossil coal and even partial substitution could lead to a significant reduction in CO_2 emissions. Depending on the type of biomass, its processing, and the way it is used in the iron making process, many different scenarios may be considered. Those scenarios should be evaluated and compared from technical, environmental, and economical points of view in order to figure out the best options. The case of a real pig iron plant located in the North East of France was investigated. First, we checked the relevance of various biomass options on the basis of the biomass availability around the plant and of the technical requirements of the processes. Then, we carried out a screening life cycle assessment focusing on global warming impacts and following a cradle-to-gate approach. Different biomass-based pig iron production scenarios were compared. The results showed that for a 20 % substitution of biomass for coke, around 300 kg of CO_2-equivalent per ton of pig iron produced could be saved, which represents a reduction of 15 % in the total greenhouse gas emissions. Finally, a brief economic evaluation of the resulting scenarios was performed.
机译:如今,钢铁的经典生产路线是基于大量使用化石煤,这是钢铁行业大部分CO_2排放的主要原因。生物质作为一种可再生的碳资源,是替代化石煤的理想人选,甚至部分替代也可能导致二氧化碳的大量减少。根据生物质的类型,其处理方式以及其在炼铁过程中的使用方式,可以考虑许多不同的方案。应该从技术,环境和经济的角度对这些方案进行评估和比较,以找出最佳方案。调查了位于法国东北部的一家真正的生铁厂的案例。首先,我们根据工厂周围生物质的可用性和流程的技术要求,检查了各种生物质选项的相关性。然后,我们进行了筛选生命周期评估,重点关注全球变暖的影响并遵循从摇篮到大门的方法。比较了基于生物质的不同生铁生产方案。结果表明,用20%的生物质代替焦炭,每吨生铁可节省约300千克二氧化碳当量,这意味着温室气体排放总量减少了15%。最后,对产生的情景进行了简短的经济评估。

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