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REACTION MECHANISMS AND PRODUCT MORPHOLOGIES ON GASEOUS REDUCTION OF METAL COMPOUNDS - Extractive Metallurgy meets Materials Science

机译:对金属化合物气体减少的反应机制和产物形态 - 萃取冶金符合材料科学

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The high temperature reduction of solids through the use of reactive gas atmospheres has application in a wide range of industrially important processes. Whilst significant advances have been made in understanding and describing these processes, some key aspects of the chemical reactions and reaction mechanisms operating in these systems, for example, the transformation from metal oxide to metal, remain poorly understood. A number of different product morphologies have been identified in these reaction systems and the reaction rates have been shown to be critically dependent on the product structure. Theoretical examination of the elementary process steps taking place in the region of the gas/metal/metal oxide interface, combined with electron microscope studies of the resultant product microstructures, have enabled the key process and material variables responsible for the development of the various product morphologies to be identified. By considering i) established criteria for the stability of moving interfaces in a thermodynamic potential gradient, ii) the relative rates of chemical reactions on the oxide and metal surfaces, and iii) key process phenomena and physico-chemical properties of the solid phases, the mechanisms and conditions for the formation of various product morphologies are identified. Interestingly the analysis points to direct analogies between these phase transformations and, the phenomena and microstructures observed in metal solidification, and the potential to develop generic models of these fluid/solid reaction systems.
机译:通过使用反应气体气氛的固体的高温降低在各种工业上的重要过程中具有应用。虽然在理解和描述这些过程中取得了重大进展,但是,在这些系统中操作的化学反应和反应机制的一些关键方面,例如,从金属氧化物与金属的转化仍然明白。已经在这些反应系统中鉴定了许多不同的产物形态,并且已显示反应速率克定依赖于产物结构。在气/金属/金属氧化物界面区域发生的基本工艺步骤的理论检查,结合所得产品微观结构的电子显微镜研究,使负责各种产品形态的开发的关键过程和材料变量能够被识别。通过考虑i)确定热力学潜在梯度的移动界面稳定性标准,ii)氧化物和金属表面上的化学反应的相对速率,以及III)的主要过程和物理学性质确定了形成各种产物形态的机制和条件。有趣的是,分析指向这些相变之间的直接类比,并且在金属凝固中观察到的现象和微观结构,以及开发这些流体/固体反应系统的通用模型的可能性。

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