[1]
Hegui Du, et. al.: Principle of Vanadium and titanium magnetite BF smelting [M]. V1. Science Press,Beijing,China, 1996., pp.229-233. in Chinese.
Google Scholar
[2]
Dongsheng Xie, Yuwen Mao. Vanadium Titanium, 1985, 20(6): 16-26. in Chinese.
Google Scholar
[3]
Shaoli Yang, Production of Titanium slag and hot iron technology with Titanium iron ore [M]. V1. Metallurgical Industry Press, Beijing, China, 2006. pp.120-124. in Chinese.
Google Scholar
[4]
Qiang Chen. World science and technology research and development, 2004, 26(2): 73-77. in Chinese.
Google Scholar
[5]
BROWN S D, ROXBURGH R J:Sulphide capacity of titania-containing slags[J],Ironmaking and Steelmaking, 2005, 9(6): 163-167.
Google Scholar
[6]
BRONSON A: The sulphide capacities CaO-SiO2 melting containing MgO, TiO2, FeO and Al2O3[J],Metallurgical Transactions, 1981, 12(4): 729-731.
DOI: 10.1007/bf02654142
Google Scholar
[7]
Xingzhong Guo, Guangyuan Wen, Binghuai Zhang. Sichuan Metallurgy[M], 2000, 22(3): 18-22. in Chinese.
Google Scholar
[8]
KASTEUJIR O, SUSAK I: Influnce of additives on sulphide capacity of CaO-CaF2-SiO2 slags[J],Metallurgical Transaction, 1990, 26(6): 1081-1084.
DOI: 10.1007/bf02670279
Google Scholar
[9]
SOSINSKY D J: The composition and temperature of the sulphide capacity of metallurgical slags[J],Metallurgical Transactions, 2004, 17(7): 331-377.
Google Scholar
[10]
GHKIT A: Sulphide capacity of slags containing FeO, CaO, TiO2and SiO2[J],Ironmaking and Steelmaking, 2003, 9(6): 239-242. Acknowledgements The project supported by natural science foundation –Iron and Steel Foundation of Hebei province. No: E2008000402.
Google Scholar