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Research on Sustainable Steelmaking

机译:可持续炼钢研究

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摘要

The international steel community is faced with the challenge of developing processes that will make steel production more sustainable in the future. Specifically, processes that produce less CO2 and less net waste materials and emissions and that consume less energy are required. This article outlines where energy consumption and CO2 emissions are high and can be reduced. Reductions can be achieved by incremental improvements to existing processes or by a “break-through innovative process”; both strategies are examined. Since most of the energy consumption and CO2 generation occur in ironmaking, research in this area is emphasized. Research on controlling the cohesive zone in the blast furnace, improving the final stages of reduction in direct reduction processes, the use of biomass, and other innovative processes for ironmaking are reviewed. In oxygen steelmaking, improved postcombustion (PC) to allow for more scrap melting is examined. Postcombustion and slag foaming in the electric arc furnace (EAF) in order to reduce energy is reviewed.
机译:国际钢铁界面临发展工艺的挑战,这些工艺将使未来的钢铁生产更具可持续性。具体来说,需要产生更少的二氧化碳,更少的净废料和排放物以及消耗更少能量的工艺。本文概述了能源消耗和CO2 排放较高且可以减少的地方。减少可以通过对现有流程进行逐步改进或通过“突破性创新流程”来实现;两种策略都进行了检查。由于大部分能源消耗和CO 2的产生都发生在炼铁中,因此该领域的研究得到了重视。审查了控制高炉内聚区,改善直接还原过程的最终还原阶段,生物质的利用以及其他创新的炼铁工艺的研究。在氧气炼钢中,研究了改进的后燃烧(PC)以允许更多的废料熔化。为了减少能源,在电弧炉(EAF)中进行了后燃烧和炉渣起泡的研究。

著录项

  • 来源
    《Metallurgical and Materials Transactions B》 |2009年第2期|123-133|共11页
  • 作者

    R. J. Fruehan;

  • 作者单位

    Center for Iron and Steelmaking Research Materials Science and Engineering Department Carnegie Mellon University Pittsburgh PA 15213 USA;

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  • 原文格式 PDF
  • 正文语种 eng
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