Carbothermal Reduction of a Primary Ilmenite Concentrate in Different Gas Atmospheres

被引:0
作者
Mohammad A.R. Dewan
Guangqing Zhang
Oleg Ostrovski
机构
[1] University of New South Wales,School of Materials Science and Engineering
[2] UNSW,undefined
来源
Metallurgical and Materials Transactions B | 2010年 / 41卷
关键词
Ilmenite; Metallic Iron; Carbothermal Reduction; Reduction Experiment; FeTiO3;
D O I
暂无
中图分类号
学科分类号
摘要
The carbothermal reduction of a primary ilmenite concentrate was studied in hydrogen, argon, and helium. Ilmenite and graphite were uniformly mixed and pressed into pellets. Reduction was studied in isothermal and temperature-programmed reduction experiments in a tube reactor with continuously flowing gas. CO, CO2, and CH4 contents in the off-gas were measured online using infrared sensors. The phase composition of reduced samples was characterized by X-ray diffraction (XRD). Oxygen and carbon contents in reduced samples were determined by LECO analyzers (LECO Corporation, St. Joseph, MI). The main phases in the ilmenite concentrate were ilmenite and pseudorutile. The reaction started with the reduction of pseudorutile to ilmenite and titania, followed by the reduction of ilmenite to metallic iron and titania. Titania was reduced to Ti3O5 and even more to Ti2O3, which was converted to titanium oxycarbide. Reduction was faster in hydrogen than in helium and argon, which was attributed to involvement of hydrogen in the reduction reactions. The formation of titanium oxycarbide in hydrogen started at 1000 °C and was completed in 300 minutes at 1200 °C, and 30 minutes at 1500 °C. The formation of titanium oxycarbide in argon and helium started at 1200 °C and was not completed after 300 minutes at 1300 °C.
引用
收藏
页码:182 / 192
页数:10
相关论文
共 50 条
[31]   Phase Transitions and Microstructural Changes During Oxidation and Reduction of a Weathered Ilmenite Concentrate [J].
Salehi, Hossein ;
Seim, Stian ;
Kolbeinsen, Leiv ;
Safarian, Jafar .
MINING METALLURGY & EXPLORATION, 2021, 38 (02) :1167-1173
[32]   Phase transformations of Langkawi ilmenite ore during carbothermal reduction using palm char as renewable reductant [J].
Mohammed, A. I. ;
Yunos, N. F. M. ;
Idris, M. A. ;
Najmi, N. H. ;
Jamal, Z. A. Z. ;
Nomura, T. .
CHEMICAL ENGINEERING RESEARCH & DESIGN, 2022, 178 :583-589
[33]   Effect of different components in cement raw meal on carbothermal reduction of NOx in flue gas: An experimental study [J].
Wang, Xiaowei ;
Cai, Jun ;
Chen, Rui ;
Ren, Qiangqiang .
PARTICUOLOGY, 2025, 99 :23-33
[34]   Preparation technology of Ti-rich material from ilmenite via method of vacuum carbothermal reduction [J].
Wu, Ke-Han ;
Zhang, Guo-Hua ;
Chou, Kuo-Chih .
CANADIAN METALLURGICAL QUARTERLY, 2019, 58 (02) :196-203
[35]   Preparation of Ferrotitanium Using Ilmenite with Different Reduction Degrees [J].
Gao, Zixian ;
Cheng, Gongjin ;
Yang, He ;
Xue, Xiangxin ;
Ri, Jongchol .
METALS, 2019, 9 (09)
[36]   Investigation of Carbothermic Reduction of Ilmenite Concentrate with Calcium Carbonate Addition Using the Rietveld Method [J].
Wang, Xiaoli ;
Li, Yang ;
Wang, Huajun ;
Sun, Chunbao ;
Kou, Jue .
METALS, 2024, 14 (12)
[37]   Time series analysis: a tool for operators training? Application to the direct reduction of ilmenite concentrate [J].
Bazin, C ;
Girard, B ;
Hodouin, D .
POWDER TECHNOLOGY, 2000, 108 (2-3) :155-159
[38]   Effect of Gas Atmosphere on Carbothermal Reduction and Nitridation of Titanium Dioxide [J].
Sheikh A. Rezan ;
Guangqing Zhang ;
Oleg Ostrovski .
Metallurgical and Materials Transactions B, 2012, 43 :73-81
[39]   Carbothermal Reduction of Quartz in Methane–Hydrogen–Argon Gas Mixture [J].
Xiang Li ;
Guangqing Zhang ;
Kai Tang ;
Oleg Ostrovski ;
Ragnar Tronstad .
Metallurgical and Materials Transactions B, 2015, 46 :2384-2393
[40]   Synthesis of silicon carbide nanowires with different morphologies by carbothermal reduction [J].
Hao Ya-Juan ;
Jin Guo-Qiang ;
Guo Xiang-Yun .
CHINESE JOURNAL OF INORGANIC CHEMISTRY, 2006, 22 (10) :1833-1837