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Effect of Applied Voltage on Electroreduction with Controlled Oxygen Flow of Molten Slag Containing FeO at 1 723 K

机译:施加电压对1723 K含FeO熔渣受控氧流电还原的影响

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摘要

This paper reports on electroreduction with controlled oxygen flow (COF) for extraction of iron along with oxygen by-product from molten slag containing FeO at 1 723 K. An electrolytic cell with COF was constructed by a cathode and a porous platinum anode sintered on a one-end-closed magnesia partially stabilized zirconia based solid electrolyte tube. The process for electroreduction with COF was analyzed. Effect of applied voltage on electroreduction behavior of FeO in SiO_2-CaO-Al_2O_3-MgO molten slag with iron rod serving as cathode was investigated by means of the linear sweep and the potentiostatic electrolysis. The possibility of zirconia membrane as conductive noncorrosive anode material was also discussed. The results show that decreased oxygen partial pressure in anode atmosphere can contribute to lower decomposition voltage of FeO in molten slag. Higher applied voltage results in better effect of FeO electroreduction. Electrolytic product can be pure iron with dendrite or ferrosilicon alloy based on applied voltage. Besides, the phase transformation of zirconia grain and the slag penetration can lead to an increase of electronic conductivity of the zirconia membrane. The corrosion of the molten slag to the zirconia membrane during electrolysis is evidently aggravated by large the applied voltage. In order to obtain pure iron and minimize the corrosion of the molten slag to the zirconia membrane under this condition of experimentation, the applied voltage of 1.5 V is preferred.
机译:这篇论文报道了在1723 K的受控氧流(COF)下进行电还原以从含FeO的熔融炉渣中提取铁和氧副产物的方法。用阴极和多孔铂阳极烧结在阴极上构造了具有COF的电解槽。单端封闭的氧化镁部分稳定的氧化锆基固体电解质管。分析了用COF进行电还原的过程。通过线性扫描和恒电位电解研究了施加电压对Fe_2O_3在SiO_2-CaO-Al_2O_3-MgO熔渣中的铁还原行为的影响。还讨论了氧化锆膜作为导电性非腐蚀性阳极材料的可能性。结果表明,阳极气氛中氧分压的降低可有助于降低熔融渣中FeO的分解电压。施加的电压越高,FeO的电解还原效果越好。根据施加的电压,电解产品可以是带有枝晶的纯铁或硅铁合金。此外,氧化锆晶粒的相变和炉渣渗透可以导致氧化锆膜的电导率增加。电解过程中熔融渣对氧化锆膜的腐蚀显然会因施加的电压大而加剧。为了在这种实验条件下获得纯铁并使熔融炉渣对氧化锆膜的腐蚀最小化,优选施加的电压为1.5V。

著录项

  • 来源
    《ISIJ international》 |2015年第11期|2273-2282|共10页
  • 作者单位

    The State Key Laboratory of Refractories and Metallurgy, Wuhan University of Science and Technology, P.O. 122 box, 947 Heping Road, Wuhan, 430081 China,Key Laboratory for Ferrous Metallurgy and Resources Utilization of Ministry of Education, Wuhan University of Science and Technology, P.O. 122 box, 947 Heping Road, Wuhan, 430081 China;

    Key Laboratory for Ferrous Metallurgy and Resources Utilization of Ministry of Education, Wuhan University of Science and Technology, P.O. 122 box, 947 Heping Road, Wuhan, 430081 China;

    Key Laboratory for Ferrous Metallurgy and Resources Utilization of Ministry of Education, Wuhan University of Science and Technology, P.O. 122 box, 947 Heping Road, Wuhan, 430081 China;

    Key Laboratory for Ferrous Metallurgy and Resources Utilization of Ministry of Education, Wuhan University of Science and Technology, P.O. 122 box, 947 Heping Road, Wuhan, 430081 China;

    Key Laboratory for Ferrous Metallurgy and Resources Utilization of Ministry of Education, Wuhan University of Science and Technology, P.O. 122 box, 947 Heping Road, Wuhan, 430081 China;

    Key Laboratory for Ferrous Metallurgy and Resources Utilization of Ministry of Education, Wuhan University of Science and Technology, P.O. 122 box, 947 Heping Road, Wuhan, 430081 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    electroreduction; controlled oxygen flow; molten slag containing FeO; zirconia based solid electrolyte; decomposition voltage;

    机译:电还原控制氧气流量;含FeO的熔渣;氧化锆基固体电解质;分解电压;

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