Microstructure change of V-Ti magnetite concentrate pellets during reduction
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摘要: 在實驗室模擬高爐條件下研究了含釩鈦鐵礦球團的還原過程,采用X射線衍射儀測定含釩鈦鐵礦球團在不同還原溫度下的物相組成,通過光學顯微鏡和掃描電鏡觀察含釩鈦鐵礦球團還原過程中微觀結構變化,并結合能譜分析儀研究氧化物中不同元素的分布狀況.含釩鈦鐵礦球團在還原過程中出現的鐵鈦分離現象會影響含釩鈦鐵礦球團的還原性,形成的高鈦含量鈦鐵晶石會增加鐵氧化物還原難度.高溫時形成的密實金屬鐵球殼會阻礙內部氧化物的還原,導致還原停滯,從而造成含釩鈦鐵礦球團高溫還原性較差.當內部熔融物滴下時,會提高高爐下部氧勢,有利于減少Ti(C,N)的生成.Abstract: The reduction process of V-Ti magnetite concentrate pellets was studied under the simulated condition of blast furnaces. Phase compositions in the pellets at different reduction temperatures were determined by X-ray diffraction analysis. The microstructure change of the pellets during reduction was observed by optical microscopy and scanning electron microscopy. The distribution of different elements in oxides was identified by energy dispersive spectrometry. It is found that iron-titanium segregation in the pellets during reduction affects the reducibility of the pellets, and the formed ilmenite spar of high titanium content increases the difficulty in reduction of iron oxides. The dense iron shell formed at high temperature hinders the reduction of inner oxides, leads to stagnation of reduction, and makes the reducibility of the pellets poor at high temperature. When the inner liquid melt dripping down, the oxygen potential increases in the lower part of the blast furnace, which decreases the generation of Ti(C, N).
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Key words:
- magnetite /
- ore pellets /
- ore reduction /
- microstructure /
- phase composition /
- blast furnaces
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