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%FeO 3 6 8 9 15 %Ti2O3 41.5860 36.7020 33.4460 31.8180 22.0500 %TiO2 55.4140 57.2980 58.5540 59.1820 62.9500 Energy consumption (kWh) 1039.3628 1019.7573 1005.2529 997.5549
%FeO | 3 | 6 | 8 | 9 | 15 |
%Ti2O3 | 41.5860 | 36.7020 | 33.4460 | 31.8180 | 22.0500 |
%TiO2 | 55.4140 | 57.2980 | 58.5540 | 59.1820 | 62.9500 |
Energy consumption (kWh) | 1039.3628 | 1019.7573 | 1005.2529 | 997.5549 | 944.6996 |
Fe metal (kg) | 356.0080 | 343.0551 | 333.8870 | 329.1312 | 297.8982 |
Carbon consumption (kg) | 105.5638 | 100.8379 | 97.4930 | 95.7579 | 84.3627 |
Slag (kg) | 518.0260 | 536.7411 | 549.9876 | 556.8591 | 601.9861 |
- Establish the correlation between TiO2 in the slag versus energy consumption
- Establish the correlation between Fe in the metal and energy consumption
- Establish the correlation between energy consumption versus Ti2O3 in the slag
- Draw a conclusion on the composition of the slag and the carbon consumption, slag composition and energy consumption, carbon consumption and energy consumption. Discuss how you would improve the energy consumption and slag quality (TiO2 content) if you were given such a project.
\%TiO2 vs Energy consumption(kWh) Fe metal (kg) vs Energy consumption (kWh) Energy consumption (kWh) vs \%Ti2O3 Energy consumption (kWh), Carbon consumption (kg) vs Slag (kg) Carhnn concumntion (k) ve Fnerov consumntion(k Wh)
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