Transactions of Nonferrous Metals Society of China The Chinese Journal of Nonferrous Metals

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中国有色金属学报

ZHONGGUO YOUSEJINSHU XUEBAO

第16卷    第3期    总第84期    2006年3月

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文章编号:  1004-0609(2006)03-0530-06
熔渣无污染短路电化学还原分析
高运明1, 郭兴敏2, 周国治2

( 1. 武汉科技大学 钢铁冶金及资源利用省部共建教育部重点实验室,武汉 430081;
2. 北京科技大学 冶金与生态工程学院, 北京 100083
)

摘 要:  在可控氧流冶金理念指导下发展了熔渣无污染短路电化学还原新方法。 分析了以氧离子导体作隔离膜时从氧化物熔渣中直接提取金属的电化学还原原理。 利用电池等效电路, 比较了熔渣在短路、 开路条件下电化学还原时氧电流的特点, 讨论了熔渣还原时影响氧电流的因素。 结果表明: 外电路短路、 降低电路中总电阻、 选用更强的还原剂或采用阴极合金化等措施可以增大氧离子电流, 提高熔渣电化学还原速度。 实验利用碳饱和铁液作还原剂, 组成如下两种电池: 石墨棒|[O]Fe+C饱和|ZrO2(MgO)|FeO(slag)|铁棒; 石墨棒|[O]Fe+C饱和|ZrO2 (MgO)| FeO(slag)+Cu(l)||钼丝, 从CaO-SiO2-Al2O3-FeO系熔渣中分别得到了纯铁和无碳铁合金。

 

关键字:  可控氧流冶金; 电化学还原; 熔渣; 氧离子导体; 氧化锆; 无污染

Unpolluted short circuit electrochemical reduction analysis for molten oxide slags
GAO Yun-ming1, GUO Xing-min2, CHOU Kuo-chih2

1. Key Laboratory for Ferrous Metallurgy and Resources Utilization of Ministry of Education, Wuhan University of Science and Technology,
 Wuhan 430081, China;
2. School of Metallurgical and Ecological Engineering, 
University of Science and Technology Beijing, Beijing 100083, China

Abstract: According to a new idea of the metallurgy with controlled oxygen flow, the unpolluted short circuit electrochemical reduction technique for molten oxide slags was developed. The electrochemical reduction principle of direct extraction of metal from molten oxide slags using oxygen ionic conductor as separate membrane was analysed. By means of equivalent circuit, oxygen ionic current characteristics in the open circuit mode and short circuit mode were compared; the effects on oxygen ionic current in electrochemical reduction process were discussed. The results show that oxygen ionic current may get large and the electrochemical reduction reaction rate will increase when the external circuit has a short circuit, total resistance of the circuit decreases, a stronger reducing agent was selected, the cathode-alloying is employed, and so on. In the present experiment the carbon saturated iron melt is used as the reducing agent and the following galvanic cells were assembled: graphite rod |[O]Fe-C saturated |ZrO2(MgO)|(FeO)(slag)| iron rod, graphite rod |[O]Fe-C saturated |ZrO2 (MgO)|Cu(l)+(FeO)(slag)|Mo wire. Pure iron and carbon-free ferroalloy were obtained respectively from CaO-SiO2-Al2O3-FeO molten slags by means of the above cells mentioned.

 

Key words: metallurgy with controlled oxygen flow; electrochemical reduction; molten oxide slags; oxygen ionic conductor; zirconia; pollution-free

ISSN 1004-0609
CN 43-1238/TG
CODEN: ZYJXFK

ISSN 1003-6326
CN 43-1239/TG
CODEN: TNMCEW

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