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熔分过程中铌、磷在渣铁两相间的分配比 被引量:4

Distribution Ratio of Niobium and Phosphorus Between Slag and Iron in the Melting-Separation Process
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摘要 以白云鄂博铌精矿经预还原后在电炉内熔分所形成的渣铁体系为研究对象,通过实验考察了熔分过程中铌、磷在渣铁两相间分配比的变化规律.结果表明,在本实验条件下,铌、磷的分配比随铁液中碳质量分数的增加而减小,当碳达到饱和时,铌氧化物会在渣铁界面处被还原为碳化铌,熔分终点w[C]应控制在3.42%以下;铌、磷的分配比随温度升高而减小,熔分温度可控制在1 450℃左右;铌、磷的分配比随渣中FeO质量分数的增加而增大,熔分终点w(FeO)应控制在5.85%左右;铌、磷的分配比随熔渣光学碱度的升高而增大,添加MgO可明显降低磷的分配比. The slag-iron system which was formed in melting-separation process of the prereduction niobium concentrate of Bayan Obo with electric furnace was taken as a research object.The variation rule of the distribution ratio of niobium and phosphorus between the slag and iron during the melting-separation process was investigated by experiment.The results showed that the distribution ratios of niobium and phosphorus decreased with the increase of w[C],and w[C]should be controlled below 3.42% at end point of the melting-separation process.The niobium oxides was reduced to NbC at the slag-iron interface when carbon dissolved in iron saturated.The distribution ratios of niobium and phosphorus decreased with the increase of temperature,the temperature should be controlled at 1 450 ℃ in the melting-separation process.The distribution ratios of niobium and phosphorus increased with the increase of w(FeO),and w(FeO) should be5.85% at end point of the melting-separation process.The distribution ratios of niobium and phosphorus increased with the increase of the optical basicity of the slag,the addition of MgO in slag greatly decreased the distribution ratio of phosphorus.
出处 《东北大学学报(自然科学版)》 EI CAS CSCD 北大核心 2014年第7期983-986,共4页 Journal of Northeastern University(Natural Science)
基金 国家重点基础研究发展计划项目(2012CB626812) 国家自然科学基金资助项目(51304042) 教育部新世纪人才支持计划项目(NCET-11-0077) 中国博士后科研基金资助项目(20100481208)
关键词 熔分 分配比 melting-separation niobium phosphorus slag iron distribution ratio
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参考文献9

  • 1任俊,徐广尧,王文梅.铌:铌矿冶工艺学及应用[M].南京:南京大学出版社,2001.
  • 2张波,姜茂发.利用白云鄂博含铌尾矿制备铌铁工艺的研究[J].工业加热,2011,40(3):56-59. 被引量:7
  • 3Yamasaki T. Distribution of niobium between liquid iron and CaO-SiO2-A1203 slag [ J ]. Tetsu-to-Hagand, 1984, 17 ( 4 ) : 133.
  • 4Inoue R, Zhang X P, Li H, et al. Distribution of Nb, P, Mn, between liquid iron and MgOsat-FetO-SiO2-NbOx-MnO slags [ J]. Transactions ISIJ, 1987,27:946 - 950.
  • 5Han Q Y,Deng J, Huang S L, et al. Distribution of niobium or tantalum between fluorine-containing slag and iron in blast furnace smelting [ J ]. Metallurgical Transactions B, 1990,21 (10) :873 -877.
  • 6何旭初,范鹏,周渝生,杨天钧,董一诚.高炉中铌还原产生的碳化铌滞留带[J].北京科技大学学报,1990,12(6):504-509. 被引量:7
  • 7製鋼第19委員会.製鋼反応の推奨平衡値(改訂増補)[M].東京:日本学術振興会,1984.
  • 8Turkdogan E T. Physical-chemical properties of molten slags and glasses[M ]. London : Metal Society Press, 1983.
  • 9Lebouteiller A, Courtine P. Improvement of a bulk optical basicity table for oxidic systems[J]. Journal of Solid State Chemistry, 1998,137:94 - 103.

二级参考文献12

  • 1何万年,何思郏.浅论铌铁合金的生产方法[J].铁合金,1995,26(6):22-26. 被引量:4
  • 2杨世山,沈甦,李治全,曹永仙.包头2号矿体选冶经济高效流程的开发[J].北京科技大学学报,1995,17(3):218-223. 被引量:7
  • 3马伟,钟祥,贺泽全,杨应亮.“两步”还原法制备中级铌铁新工艺中铌收率的研究[J].稀有金属,1996,20(4):254-258. 被引量:11
  • 4方觉,王志荣,张家元,张永光,黄雁华,李小刚.包头铌铁矿冶炼实验室研究[J].东北大学学报(自然科学版),1996,17(1):35-40. 被引量:15
  • 5S. K. Wei. Selective Oxidation of Elements in Metal Melt and their Multireaction Equilibria [J]. Steel Research, 1988, 59 (9): 381-393.
  • 6福泽章 中川龙一 吉松史朗.包头铁水连续处理.钢铁,1984,:227-230.
  • 7张新 贾垣冰 岳宝兰.用氯化法从铁水连续提铌的包头炉渣中提取铌的研究.稀有金属,1988,:381-384.
  • 8曹永仙,高连让,赵素琴,等.三相交流工频等离子体冶炼含铌转炉渣制取铌铁的实验研究[C]//第五届等离子科学技术会议论文集.大连:大连理工大学出版社,1989(10):108-110.
  • 9孔令坛,任大宁.转底炉冶炼珠铁新工艺[C]//第七届中国钢铁年会论文集.北京:冶金工业出版社,2009:86-89.
  • 10何旭初,1987年

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