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在实现钢铁行业 CO2 目标方面,能源和材料效率的作用。

The roles of energy and material efficiency in meeting steel industry CO2 targets.

机构信息

Department of Engineering, University of Cambridge, Trumpington Street, Cambridge CB2 1PZ, United Kingdom.

出版信息

Environ Sci Technol. 2013 Apr 2;47(7):3455-62. doi: 10.1021/es3031424. Epub 2013 Mar 7.

Abstract

Identifying strategies for reducing greenhouse gas emissions from steel production requires a comprehensive model of the sector but previous work has either failed to consider the whole supply chain or considered only a subset of possible abatement options. In this work, a global mass flow analysis is combined with process emissions intensities to allow forecasts of future steel sector emissions under all abatement options. Scenario analysis shows that global capacity for primary steel production is already near to a peak and that if sectoral emissions are to be reduced by 50% by 2050, the last required blast furnace will be built by 2020. Emissions reduction targets cannot be met by energy and emissions efficiency alone, but deploying material efficiency provides sufficient extra abatement potential.

摘要

确定减少钢铁生产温室气体排放的策略需要一个全面的行业模型,但以前的工作要么没有考虑整个供应链,要么只考虑了可能的减排方案中的一部分。在这项工作中,我们将全球质量流分析与工艺排放强度相结合,以便在所有减排方案下预测未来钢铁行业的排放情况。情景分析表明,全球主要钢铁生产能力已经接近峰值,如果要在 2050 年前将行业排放量减少 50%,那么最后一座需要的高炉将在 2020 年前建成。仅靠能源和排放效率无法实现减排目标,而提高材料效率则提供了足够的额外减排潜力。

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