Effect of TiO2 Addition on the Melting Behaviors of CaO-SiO2-30%Al2O3-5%MgO System Refining Slags
Abstract
:1. Introduction
2. Materials and Methods
2.1. Slag Preparation
2.2. Measurement of Melting Point
2.3. Sample Analysis
3. Results
3.1. Variation of Melting Point
3.1.1. Effect of Slag Basicity
3.1.2. Effect of TiO2 Addition
3.2. Phases in Slag
3.2.1. Effect of Basicity
Point | Figure | Slag | Si | Ca | Al | Mg | Ti | O | Estimated Phase |
---|---|---|---|---|---|---|---|---|---|
1 | 7a | B1 | 9.87 | 20.26 | 18.10 | 0.51 | 0.27 | 50.98 | 2CaO·Al2O3·SiO2 |
2 | 7a | B1 | 0.06 | - | 26.70 | 15.01 | 0.60 | 57.63 | MgO·Al2O3 |
3 | 7a | B1 | 0.09 | 22.02 | 1.71 | 0.08 | 19.69 | 56.41 | CaO-TiOx-Al2O3 |
4 | 7a | B1 | 14.48 | 18.44 | 4.54 | 6.13 | 0.18 | 56.22 | Liquid |
5 | 7b | A3 | 2.79 | 22.57 | 17.92 | 2.95 | 0.90 | 52.87 | Liquid |
6 | 7b | A3 | 1.15 | 23.09 | 6.73 | 1.24 | 12.80 | 55.00 | CaO-TiOx-Al2O3 |
7 | 7b | A3 | 12.59 | 27.52 | 1.75 | 0.41 | 0.65 | 57.08 | 2CaO·SiO2 |
8 | 7b | A3 | 0.04 | 0.73 | 1.56 | 50.48 | 0.02 | 47.17 | MgO |
9 | 7c | B3 | 0.03 | 0.27 | 0.11 | 42.55 | 0.05 | 56.99 | MgO |
10 | 7c | B3 | 2.09 | 28.54 | 15.13 | 0.95 | 1.16 | 52.14 | 3CaO·Al2O3 |
11 | 7c | B3 | 0.92 | 24.22 | 8.83 | 1.27 | 10.30 | 54.46 | CaO-TiOx-Al2O3 |
12 | 7c | B3 | 2.49 | 25.67 | 19.82 | 3.23 | 1.35 | 47.43 | Liquid |
13 | 7c | B3 | 11.16 | 24.32 | 2.05 | 0.98 | 1.24 | 60.24 | 2CaO·SiO2 |
14 | 10a | A1 | 2.06 | 20.27 | 21.59 | 3.77 | 0.10 | 52.22 | Liquid |
15 | 10a | A1 | 0.14 | 0.31 | 0.08 | 52.54 | - | 46.93 | MgO |
16 | 10a | A1 | 13.68 | 25.38 | 1.71 | 0.45 | - | 58.78 | 2CaO·SiO2 |
17 | 10b | A5 | 2.97 | 21.65 | 19.53 | 3.27 | 0.79 | 51.80 | Liquid |
18 | 10b | A5 | 0.92 | 24.22 | 8.83 | 1.27 | 10.3 | 54.46 | CaO-TiOx-Al2O3 |
19 | 10b | A5 | 12.69 | 25.87 | 0.80 | 0.95 | 0.34 | 59.34 | 2CaO·SiO2 |
20 | 10b | A5 | 0.09 | 2.96 | 1.02 | 51.35 | 0.07 | 44.51 | MgO |
3.2.2. Effect of TiO2 Addition
4. Discussion
4.1. Effect of Basicity on Melting Behaviors
4.2. Effect of TiO2 on Melting Behaviors
5. Conclusions
Author Contributions
Funding
Data Availability Statement
Conflicts of Interest
References
- Eriksson, G.; Pelton, A.D. Critical evaluation and optimization of the thermodynamic properties and phase diagrams of the CaO-Al2O3, Al2O3-SiO2, and CaO-Al2O3-SiO2 systems. Metall. Mater. Trans. B 1993, 24, 807–816. [Google Scholar] [CrossRef]
- Cao, J.; Li, Y.; Lin, W.; Che, J.; Zhou, F.; Tan, Y.; Li, D.; Dang, J.; Chen, C. Assessment of Inclusion Removal Ability in Refining Slags Containing Ce2O3. Crystals 2023, 13, 202. [Google Scholar] [CrossRef]
- Zhao, B.; Wu, W.; Zhi, J.; Su, C.; Yao, T. Effect of CeO2 Content on Melting Performance and Microstructure of CaO-Al2O3-SiO2-MgO Refining Slag. Metals 2023, 13, 179. [Google Scholar] [CrossRef]
- Kim, J.R.; Lee, Y.S.; Jung, S.M.; Yi, S.H. Influence of MgO and Al2O3 contents on viscosity of blast furnace type slags containing FeO. ISIJ Int. 2004, 44, 1291–1297. [Google Scholar] [CrossRef]
- Lee, Y.S.; Min, D.J.; Jung, S.M.; Yi, S.H. Influence of basicity and FeO content on viscosity of blast furnace type slags containing FeO. ISIJ Int. 2004, 44, 1283–1290. [Google Scholar] [CrossRef] [Green Version]
- Kim, G.H.; Sohn, I. Influence of Li2O on the viscous behavior of CaO-Al2O3-12 mass% Na2O-12 mass% CaF2 based slags. ISIJ Int. 2012, 52, 68–73. [Google Scholar] [CrossRef] [Green Version]
- Wang, H.M.; Li, G.R.; Li, B.; Zhang, X.J.; Yan, Y.Q. Effect of B2O3 on melting temperature of CaO-based ladle refining slag. J. Iron Steel Res. Int. 2010, 17, 18–22. [Google Scholar] [CrossRef]
- Saito, N.; Hori, N.; Nakashima, K.; Mori, K. Viscosity of blast furnace type slags. Metall. Mater. Trans. B 2003, 34, 509–516. [Google Scholar] [CrossRef]
- Sohn, I.; Wang, W.L.; Matsuura, H.; Tsukihashi, F.; Min, D.J. Influence of TiO2 on the viscous behavior of calcium silicate melts containing 17mass% Al2O3 and 10mass% MgO. ISIJ Int. 2012, 52, 158–160. [Google Scholar] [CrossRef] [Green Version]
- Park, H.; Park, J.Y.; Kim, G.H.; Sohn, I. Effect of TiO2 on the viscosity and slag structure in blast furnace type slags. Steel Res. Int. 2012, 83, 150–156. [Google Scholar] [CrossRef]
- Zhang, S.F.; Zhang, X.; Bai, C.G.; Wen, L.Y.; Lv, X.W. Effect of TiO2 content on the structure of CaO-SiO2-TiO2 system by molecular dynamics simulation. ISIJ Int. 2013, 53, 1131–1137. [Google Scholar] [CrossRef] [Green Version]
- Shankar, A.; Görnerup, M.; Seetharaman, S.; Lahiri, A.K. Sulfide capacity of high alumina blast furnace slags. Metall. Mater. Trans. B 2006, 37, 941–947. [Google Scholar] [CrossRef]
- Yan, Z.M.; Lv, X.W.; He, W.C.; Xu, J. Effect of TiO2 on the liquid zone and apparent viscosity of SiO2-CaO-8wt%MgO-14wt%Al2O3 system. ISIJ Int. 2017, 57, 31–36. [Google Scholar] [CrossRef] [Green Version]
- Feng, C.; Chu, M.S.; Tang, J.; Qin, J.; Feng, L.; Liu, Z.G. Effects of MgO and TiO2 on the viscous behaviors and phase compositions of titanium-bearing slag. Int. J. Miner. Metall. Mater. 2016, 23, 868–880. [Google Scholar] [CrossRef]
- Ohno, A.; Ross, H.U. Optimum slag composition for the blast-furnace smelting of titaniferous ores. Can. Metall. Q. 1963, 2, 259–279. [Google Scholar] [CrossRef]
- Zhang, J.Z.; Shi, L.L.; Ao, W.Z. Melting property of high-alumina and low-titania BF slag. J. Iron. Steel Res. Int. 2010, 22, 16–19. [Google Scholar]
- Han, C.; Chen, M.; Zhang, W.D.; Zhao, Z.X.; Evans, T.; Zhao, B.J. Evaluation of existing viscosity data and models and developments of new viscosity model for fully liquid slag in the SiO2-Al2O3-CaO-MgO system. Metall. Mater. Trans. B 2016, 47, 2861–2874. [Google Scholar] [CrossRef]
- Fine, H.A.; Arac, S. Effect of minor constituents on liquidus temperature of synthetic blast-furnace slags. Ironmak. Steelmak. 1980, 7, 160–166. [Google Scholar]
- Nityanand, N.; Fine, H.A. The Effect of TiO2 additions and oxygen potential on liquidus temperatures of some CaO-Al2O3 melts. Metall. Mater. Trans. B 1983, 14, 685–692. [Google Scholar] [CrossRef]
- Pang, Z.D.; Lv, X.W.; Jiang, Y.Y.; Ling, J.W.; Yan, Z.M. Blast furnace ironmaking process with super-high TiO2 in the slag: Viscosity and melting properties of the slag. Metall. Mater. Trans. B 2020, 51, 722–731. [Google Scholar] [CrossRef]
- Gao, Y.H.; Liang, Z.Y.; Liu, Q.C.; Bian, L.T. Effect of TiO2 on the slag properties for CaO-SiO2-MgO-Al2O3-TiO2 system. Asian J. Chem. 2012, 24, 5337. [Google Scholar]
- Sigurdson, H.; Cole, S.S. Melting points in the system TiO2-CaO-MgO-Al2O3. JOM 1949, 1, 905–908. [Google Scholar] [CrossRef]
- Osborn, E.; Gee, K. Phase equilibria at liquidus temperatures for a part of the system CaO-MgO-Al2O3-TiO2-SiO2 and their bearing on the effect of titania on the properties of blast furnace slag. Bull. Earth Miner. Sci. Exp. Stn. 1969, 85, 57–80. [Google Scholar]
- Zhen, W.; Sun, H.Y.; Zhang, L.; Zhu, Q.S. Phase equilibria in the TiO2 rich part of the TiO2-CaO-SiO2-10wt.% Al2O3 system at 1773 K and 1873 K. J. Alloys Compd 2016, 671, 137–143. [Google Scholar]
- Shi, J.J.; Sun, L.F.; Qiu, J.Y.; Zhang, B.; Jiang, M.F. Phase equilibria of CaO-SiO2-5wt% MgO-10wt%Al2O3-TiO2 system at 1300 °C and 1400 °C relevant to Ti-bearing furnace slag. J. Alloys Compd. 2017, 699, 193–199. [Google Scholar] [CrossRef]
- Jiao, K.X.; Zhang, J.L.; Wang, Z.Y.; Liu, Y.X.; Xu, R.Z. Melting features and viscosity of TiO2-containing primary slag in a blast furnace. High Temp. Mater. Process. 2018, 37, 149–156. [Google Scholar] [CrossRef]
- Wang, S.; Guo, Y.F.; Jiang, T.; Chen, F.; Zheng, F.Q.; Yang, L.Z. Melting behavior of titanium-bearing electric furnace slag for effective smelting of vanadium titanomagnetite. JOM 2019, 71, 1858–1865. [Google Scholar] [CrossRef]
- Yan, Z.W.; Deng, Z.Y.; Zhu, M.Y.; Huo, L.Q. Effect of CaCl2 addition on the melting behaviors of CaO-SiO2-FeOx steelmaking slag system. Metall. Mater. Trans. B 2021, 52, 1142–1153. [Google Scholar] [CrossRef]
- Verein Deutscher Eisenhüttenleute (VDEh). Slag Atlas, 2nd ed.; Verlag Stahleisen GmbH: Düsseldorf, Germany, 1995; p. 105. [Google Scholar]
- Jongejan, A.; Wilkins, A.L. A re-examination of the system CaO-TiO2 at liquidus temperatures. J. Less-Common Met 1970, 20, 273–279. [Google Scholar] [CrossRef]
- Ma, J.; Fu, G.Q.; Li, W.; Zhu, M.Y. Influence of TiO2 on the melting property and viscosity of Cr-containing high-Ti melting slag. Int. J. Mine. Metall. Mater. 2020, 27, 310–318. [Google Scholar] [CrossRef]
- Deng, Z.Y.; Zhu, M.Y. A new double calcium treatment method for clean steel refining. J. Steel Res. Int. 2013, 84, 519–525. [Google Scholar] [CrossRef]
- Zhao, Z.Y.; Zhao, J.X.; Tan, Z.X.; Qu, B.Q.; Lu, L.; Cui, Y.R. Effect of the heating rate and premelting process on the melting point and volatilization of a fluorine-containing slag. Sci. Rep. 2020, 10, 11254. [Google Scholar] [CrossRef] [PubMed]
Slag No. | CaO | SiO2 | Al2O3 | MgO | TiO2 | Basicity R | Heating Temp (°C) | Measured Tm (°C) | |
---|---|---|---|---|---|---|---|---|---|
Mixed | Melted | ||||||||
A1 | 55.80 | 9.20 | 30.00 | 5.00 | - | 6 | 1550, 1310 | 1313.6 | 1286.4 |
A2 | 54.00 | 9.00 | 30.00 | 5.00 | 2.00 | 6 | 1550 | 1295.1 | 1282.4 |
A3 | 51.43 | 8.57 | 30.00 | 5.00 | 5.00 | 6 | 1550, 1310 | 1293.1 | 1280.8 |
A4 | 49.71 | 8.29 | 30.00 | 5.00 | 7.00 | 6 | - | 1294.2 | - |
A5 | 47.14 | 7.86 | 30.00 | 5.00 | 10.00 | 6 | 1550, 1310 | 1301.4 | 1309.6 |
B1 | 40.00 | 20.00 | 30.00 | 5.00 | 5.00 | 2 | 1550, 1310 | 1418.0 | 1342.8 |
B2 | 53.33 | 6.67 | 30.00 | 5.00 | 5.00 | 8 | 1550 | 1299.1 | 1298.7 |
B3 | 54.54 | 5.45 | 30.00 | 5.00 | 5.00 | 10 | 1550, 1310 | 1325.0 | 1305.2 |
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Zhang, X.; Yan, Z.; Deng, Z.; Zhu, M. Effect of TiO2 Addition on the Melting Behaviors of CaO-SiO2-30%Al2O3-5%MgO System Refining Slags. Metals 2023, 13, 431. https://doi.org/10.3390/met13020431
Zhang X, Yan Z, Deng Z, Zhu M. Effect of TiO2 Addition on the Melting Behaviors of CaO-SiO2-30%Al2O3-5%MgO System Refining Slags. Metals. 2023; 13(2):431. https://doi.org/10.3390/met13020431
Chicago/Turabian StyleZhang, Xiaomeng, Ziwen Yan, Zhiyin Deng, and Miaoyong Zhu. 2023. "Effect of TiO2 Addition on the Melting Behaviors of CaO-SiO2-30%Al2O3-5%MgO System Refining Slags" Metals 13, no. 2: 431. https://doi.org/10.3390/met13020431
APA StyleZhang, X., Yan, Z., Deng, Z., & Zhu, M. (2023). Effect of TiO2 Addition on the Melting Behaviors of CaO-SiO2-30%Al2O3-5%MgO System Refining Slags. Metals, 13(2), 431. https://doi.org/10.3390/met13020431