论文标题

基于氢的直接还原铁氧化物的层次性质

Hierarchical nature of hydrogen-based direct reduction of iron oxides

论文作者

Ma, Yan, Filho, Isnaldi R. Souza, Bai, Yang, Schenk, Johannes, Patisson, Fabrice, Beck, Arik, van Bokhoven, Jeroen A., Willinger, Marc G., Li, Kejiang, Xie, Degang, Ponge, Dirk, Zaefferer, Stefan, Gault, Baptiste, Mianroodi, Jaber R., Raabe, Dierk

论文摘要

不含化石的熨斗是减少钢铁行业中大量人为二氧化碳排放所必不可少的。基于氢的直接减少(Hyd)是绿色铁制造最有吸引力的解决方案之一,具有高科技准备。管理此过程的基本机制的特征是几种化学(相变),物理(运输)和机械(应力)现象的复杂相互作用。它们的相互作用导致了丰富的微观结构,其特征在于缺陷的层次结构,范围为几个数量级,包括空位,位错,内部接口和自由表面,裂纹和孔的形式。这些缺陷都可以充当反应,成核和扩散位点,从而塑造整体还原动力学。对这些动态发展的纳米/微结构特征的角色和相互作用有清晰的了解。在这些效果中获得更好的见解可以改善对基于微观结构的更有效的水力方法的设计,并可能对钢铁行业急需的脱碳产生高影响。

Fossil-free ironmaking is indispensable for reducing massive anthropogenic CO2 emissions in the steel industry. Hydrogen-based direct reduction (HyDR) is among the most attractive solutions for green ironmaking, with high technology readiness. The underlying mechanisms governing this process are characterized by a complex interaction of several chemical (phase transformations), physical (transport), and mechanical (stresses) phenomena. Their interplay leads to rich microstructures, characterized by a hierarchy of defects ranging across several orders of magnitude in length, including vacancies, dislocations, internal interfaces, and free surfaces in the form of cracks and pores. These defects can all act as reaction, nucleation, and diffusion sites, shaping the overall reduction kinetics. A clear understanding of the roles and interactions of these dynamically-evolving nano-/microstructure features is missing. Gaining better insights in these effects could enable improved access to the microstructure-based design of more efficient HyDR methods, with potentially high impact on the urgently needed decarbonization in the steel industry.

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