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(W086)A study on transformation of some transition metal oxides in molten steelmaking slag to magnetically susceptible compounds

机译:(W086)熔融炼钢中一些过渡金属氧化物转化对磁化化合物的研究

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Sustainable development of steelmaking requires solving a number of environmental problems. Economically feasible and environmentally friendly recycling of slag wastes is of special concern. Research of the team representing National Metallurgical Academy of Ukraine, Royal Institute of Technology, Carnegie Mellon University and URS Corp revealed a possibility of the controlled phase transformations in the liquid silicate melts followed by formation of the magnetically susceptible compounds. This approach enables selective recovery of metal values from slag. In this paper, the results obtained and further research directions are discussed. A possibility to exploit physical properties of the transition metals, typical for the metallurgical slags (such as Fe, Mn, V and others), and corresponding specific properties of their compounds, such as non-stoichiometry, mixed valency, pseudomorphosis, thermodynamic stability etc, in production of value-added materials from slag wastes is discussed. The results of the studies of thermodynamics and kinetics of oxidation in slags followed by phase transformation with binary, ternary and complex oxides under various physicochemical conditions are discussed in the view of their application for production of the materials with predefined physical properties. Peculiarities of precipitation in slags with various basicities are analysed and demonstrate capacity of the proposed approach in the production of the material with a given structure and size – for example, nano-sized crystals with structure of spinel. The approaches towards industrial realization of the developed method are also discussed.
机译:炼钢的可持续发展需要解决一些环境问题。在经济上可行和环保的炉渣废物的回收是特别关注的。代表乌克兰皇家理工学院全国冶金学院的团队研究,卡内基梅隆大学和URS公司揭示了液体硅酸盐熔体中受控相变的可能性,然后形成磁易感化合物。这种方法能够选择性地恢复炉渣的金属值。在本文中,讨论了所获得的结果和进一步的研究方向。用于利用过渡金属的物理性质的可能性,典型的冶金渣(例如Fe,Mn,V和其他),以及其化合物的相应特性,例如非化学计量,混合级,假形象,热力学稳定性等在讨论中,在制造中,讨论了来自炉渣废物的增值材料。在施用具有预定义物理性质的材料的应用中,讨论了在各种物理化学条件下进行二元,三元和复合氧化物的热力学和氧化动力学的研究结果。分析了具有各种碱性的渣中沉淀的特性,并展示了所提出的方法在生产材料中具有给定结构和尺寸的方法 - 例如,具有尖晶石结构的纳米晶体。还讨论了开发方法的工业实现方法。

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