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Acta Metall Sin  1990, Vol. 26 Issue (1): 91-95    DOI:
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ELECTROCHEMICAL STUDY OF ACTIVITY OF Nb_2O_5 AND MnO IN Nb_2O_5-MnO-SiO_2 SYSTEM
ZHANG Shengbi;WEI Shoukun;WANG Ruiyin;LI Liman University of Science and Technology Beijing Professor; Faculty of Metallurgical Physical Chemistry;University of Science and Technology Beijing; Beijing 100083
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ZHANG Shengbi;WEI Shoukun;WANG Ruiyin;LI Liman University of Science and Technology Beijing Professor; Faculty of Metallurgical Physical Chemistry;University of Science and Technology Beijing; Beijing 100083. ELECTROCHEMICAL STUDY OF ACTIVITY OF Nb_2O_5 AND MnO IN Nb_2O_5-MnO-SiO_2 SYSTEM. Acta Metall Sin, 1990, 26(1): 91-95.

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Abstract  Equilibrium between liquid Fe containing Nb with Nb_2O_5-MnO-SiO_2slag was investigated at 1828 K, the solid electrolyte oxygen concentration cell be-ing used to measure the activity of oxygen in the metal bath. The activity of Nb_2O_5and MnO in the slag was evaluated, accompanied with an iso-activity diagram ofα_(Nb_2O_5) and α_(MnO) in Nb_2O_5-MnO-SiO_2 slag.
Key words:  activity      Nb_2O_5-MnO-SiO_2 system      slag     
Received:  18 January 1990     
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1 魏寿昆,张圣弼,佟亭,谭赞麟.稀有金属,1983;2(1) :10
2 张圣弼,佟亭,王济舫,魏寿昆.金属学报,1984;20:A348
3 Kawakami M, Goto K S, Matsuoka M. Tras Metall, 1980; 11B: 463
4 Janke D, Fischer W A. Arch Eisenhuttenwes, 1975; 46: 755
5 Chase M W, Curnutt J L, Prophet H, Mcdonald R A, Syverud A N. J Phys Chem Ref Data, 1975; 4: 1
6 Turkdogan E T. Physical Chemistry of High Temperature Technology, New York: Academic Press, 1980: 20
7 Alcock C B, Zador S. Electrochim Acta, 1967; 12: 673
8 Hultgren R, Dcsai P D, Hawkins D T, Gleiser M, Kelley K K, Wagman D D. Selected Values of the Thermodynamic Properties of the Elements, Metals Park, Ohio: ASM, 1973: 305
9 Sigworth G K, Elliott J F. Met Sci, 1974: 8: 298
10 Schmalzried H. Z Phys Chem, Neue Folge, 1963; 38: 87`
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