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Biomass-based gas use in Swedish iron and steel industry - Supply chain and process integration considerations

机译:瑞典钢铁行业中基于生物质的天然气使用-供应链和流程集成注意事项

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摘要

Substitution of fossil gaseous fuels with biomass-based gases is of interest to the iron and steel industry due to its role in the mitigation of anthropogenic CO2 emissions. In switching from fossil fuels to biomass-based gases, a systems analysis of the full value chain from biomass supply to the production and supply of final gas products becomes crucial. This study uses process and heat integration methods in combination with a supply chain evaluation to analyse full value chains of biomass-based gases for fossil gas replacement within the iron and steel industry. The study is carried out as a specific case study in order to understand the implications of utilizing bio-syngas/bio-SNG as heating fuels in iron- and steel-making, and to provide insights into the most sensitive parameters involved in fuel switching. The results show a significant cost difference in the fuel production of the two gas products owing to higher capital and biomass use in the bio-SNG value chain option. When tested for sensitivity, biomass price, transportation distance, and capital costs show the most impact on fuel production costs across all options studied. Trade-offs associated with process integration, plant localisation, feedstock availability and supply were found to varying extents. (C) 2019 Elsevier Ltd. All rights reserved.
机译:钢铁行业对化石气体燃料替代基于生物质的气体很感兴趣,因为它在减轻人为二氧化碳排放方面具有重要作用。从化石燃料转换为基于生物质的气体时,从生物质供应到最终气体产品的生产和供应的整个价值链的系统分析变得至关重要。这项研究将过程和热集成方法与供应链评估相结合,以分析钢铁行业中用于替代化石气体的生物质气体的完整价值链。这项研究是作为一个具体案例进行的,目的是了解在钢铁制造中利用生物合成气/生物SNG作为加热燃料的含义,并提供有关燃料转换中最敏感参数的见解。结果表明,由于生物-SNG价值链选择中的较高资本和生物质使用,这两种气体产品的燃料生产存在显着的成本差异。在进行敏感性测试时,在所有研究的方案中,生物质价格,运输距离和资本成本对燃料生产成本的影响最大。人们发现,与过程集成,工厂本地化,原料可用性和供应相关的权衡程度不同。 (C)2019 Elsevier Ltd.保留所有权利。

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