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Reduction mechanism and carbon content investigation for electrolytic production of iron from solid Fe2O3 in molten K2CO3-Na2CO3 using an inert anode
D. Y. Tang; H. Y. Yin; W. Xiao; H. Zhu; X. H. Mao; D. H. Wang
2013
Source PublicationJournal of Electroanalytical Chemistry
ISSN1572-6657
Volume689Pages:109-116
AbstractIron and oxygen was recently electrochemically prepared in molten Na2CO3-K2CO3 eutectic melt at 750 degrees C using a solid iron oxide pellet cathode and a cheap Ni10Cu11 Fe alloy inert anode. This paper focuses to reveal the detailed reduction kinetics of solid Fe2O3 in the melt and also the effect of reduction potential on the carbon content in the iron product. The reduction mechanism was systematically investigated by cyclic voltammetric measurements, potentiostatic electrolysis combining with the composition and morphology analysis of the products obtained at different potentials. It was found that the reduction of Fe2O3 involves three steps, with the formation of intermediate products, viz., NaFe2O3 and NaFeO2. The influence of electrolysis voltage/potential on the carbon content in the products was investigated by using both constant voltage and potentiostatic electrolysis under different conditions. The carbon content was found to be in the range of 0.035-0.76 wt.%, depending on the applied cathodic potential. The iron-based products with higher carbon content can be obtained upon electrolysis at a higher cell voltage or a more negative potential. The present results also demonstrated a controllable extraction of Fe-C steels with desired carbon content through an environmental friendly way. (C) 2012 Elsevier B.V. All rights reserved.
description.department[tang, diyong ; yin, huayi ; xiao, wei ; zhu, hua ; mao, xuhui ; wang, dihua] wuhan univ, sch resource & environm sci, wuhan 430072, peoples r china. [wang, dihua] chinese acad sci, inst met res, state key lab corros & protect, shenyang 110016, peoples r china. ; wang, dh (reprint author), wuhan univ, sch resource & environm sci, wuhan 430072, peoples r china. ; wangdh@whu.edu.cn
KeywordMolten Salts Cyclic Voltammetry Electro-reduction Iron 3-phase Interlines Corrosion Behavior Sodium-hydroxide Stainless-steels Cacl2 Powders Oxygen Oxide Chromium Dioxide
URL查看原文
Language英语
Document Type期刊论文
Identifierhttp://ir.imr.ac.cn/handle/321006/71495
Collection中国科学院金属研究所
Recommended Citation
GB/T 7714
D. Y. Tang,H. Y. Yin,W. Xiao,et al. Reduction mechanism and carbon content investigation for electrolytic production of iron from solid Fe2O3 in molten K2CO3-Na2CO3 using an inert anode[J]. Journal of Electroanalytical Chemistry,2013,689:109-116.
APA D. Y. Tang,H. Y. Yin,W. Xiao,H. Zhu,X. H. Mao,&D. H. Wang.(2013).Reduction mechanism and carbon content investigation for electrolytic production of iron from solid Fe2O3 in molten K2CO3-Na2CO3 using an inert anode.Journal of Electroanalytical Chemistry,689,109-116.
MLA D. Y. Tang,et al."Reduction mechanism and carbon content investigation for electrolytic production of iron from solid Fe2O3 in molten K2CO3-Na2CO3 using an inert anode".Journal of Electroanalytical Chemistry 689(2013):109-116.
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