Monomer dissociation characteristics and selective recovery technology of micro-fine iron particles
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摘要: 研究了直接還原熟料中微細鐵顆粒的賦存形式和選擇性回收工藝.發現尾渣中鐵的賦存形態主要為微細粒的單質鐵;直接還原熟料中小于5μm的細連生體和鐵顆粒很難通過磁選回收,但大于10μm的粗鐵顆粒可以回收.為了兼顧粉末鐵的品位與回收率,需要對不同賦存狀態的鐵顆粒進行選擇性回收.提高粗連生體的單體解離度,有針對性地回收其中的鐵顆粒,是提高粉末鐵回收指標的關鍵.提高磁選場強可提高粉末鐵回收率,但降低粉末鐵品質.利用正交試驗對工藝參數進行了優化,在優化條件下粉末鐵中TFe質量分數和鐵回收率分別為92.91%和92.03%.Abstract: This article studies the existing form of iron particles in direct reduction clinker and their selective recovery technology. It is found that the existing form of iron in tailings is micro-fine iron particles. In direct reduction clinker, the particles greater than 10μm can be recovered by magnetic separation, however those less than 5μm cannot. Considering both the grade and recovery of iron powders, it is necessary to conduct a selective recovery of different types of iron powders. Increasing the monomeric liberation of coarse intergrowths and recovering iron particles specifically from the intergrowths are the key to improve the recovery index of iron powders. Though the recovery of iron can be improved by increasing the magnetic field intensity, the quality of iron powders reduces. Technological parameters have been optimized for the separation by orthogonal test. Under the optimization condition the TFe content of iron powders and the recovery rate of iron is 92.91% and 92.03%, respectively.
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Key words:
- hematite /
- dissociation /
- recovery /
- magnetic separation /
- direct reduction process
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