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Guidelines to design multicomponent ferrospinels for high-temperature applications

机译:设计高温应用的多组分铸造的指导方针

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摘要

This work explores the possibilities to design magnetite-based spinels through multiple simultaneous co-substitutions with transition metal cations, with emphasis on redox behavior and electronic transport. For the first time this approach was assessed for high-temperature applications, which is of particular interest for the development of consumable anodes for pyroelectrolysis, an alternative carbon-lean steelmaking process. A Taguchi plan was used to assess the impact of the concentration of substituting chromium, titanium, manganese and nickel cations on the lattice parameter and electrical conductivity of the multicomponent ferrospinels. The results revealed a comparable decrease in the electrical conductivity, provided by Cr3+, Mn3+/2+ and Ni2+ cations. The impact of Ti4+ was found to be less negative, contributed by the formation of Fe2+ cations and increased hopping probability. The strongest structural impacts, exerted by manganese cations, are likely to affect the mobility of polarons, as revealed by the analysis of the correlation factors for combined effects. Ferrospinels, containing various transition metal cations, are more susceptible to oxidation and phase decomposition, which often result in a sudden conductivity drop and significant dimensional changes in the ceramics. The observed trends for redox behavior suggest that the potential applications of multicomponent ferrospinels in oxidizing conditions are limited to 1000-1400 K due to insufficient stability, while higher temperature applications, requiring significant electronic conductivity, are rather suitable.
机译:这项工作探索的可能性通过多个同时共置换过渡金属阳离子,设计基于磁铁矿尖晶石,重点在氧化还原行为和电子运输。首次这种方法评估用于高温应用,其是用于可消耗阳极的开发pyroelectrolysis,替代碳贫炼钢工艺特别感兴趣的。甲田口计划是用来评估对晶格参数和多组分ferrospinels的电导率代铬,钛,锰和镍阳离子的浓度的影响。结果揭示了在导电性的比较的减少,通过三价铬,MN3 + / 2 +和Ni2 +离子提供。 Ti 4+的影响被认为是负少,贡献的Fe2 +的阳离子的形成和增加跳跃概率。最强的结构的影响,由锰阳离子施加,有可能影响极化子的迁移率,由相关因素综合作用的分析所揭示的。 Ferrospinels,含有各种过渡金属阳离子,对氧化和相分解,这往往导致突然电导率下降,并在陶瓷显著尺寸变化更敏感。氧化还原行为所观察到的趋势表明,多组分ferrospinels的在氧化条件下的潜在的应用被限制为1000年至一四零零年ķ由于稳定性不充分,而较高温度的应用,需要显著电子传导性,是相当合适的。

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  • 来源
    《RSC Advances 》 |2016年第39期| 共9页
  • 作者单位

    Univ Aveiro Dept Mat &

    Ceram Engn CICECO Aveiro Inst Mat P-3810193 Aveiro Portugal;

    Univ Aveiro Dept Mat &

    Ceram Engn CICECO Aveiro Inst Mat P-3810193 Aveiro Portugal;

    Univ Aveiro Dept Mech Engn TEMA Ctr Mech Technol &

    Automat P-3810193 Aveiro Portugal;

    Univ Aveiro Dept Phys i3N P-3810193 Aveiro Portugal;

    Univ Aveiro Dept Mat &

    Ceram Engn CICECO Aveiro Inst Mat P-3810193 Aveiro Portugal;

    Univ Aveiro Dept Mat &

    Ceram Engn CICECO Aveiro Inst Mat P-3810193 Aveiro Portugal;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
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