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赤鐵礦的自載體作用及對浮選的影響

The self-carrier effect of hematite in the flotation

  • 摘要: 通過單礦物浮選試驗、光學顯微鏡分析、E-DLVO理論計算、團聚動力學分析等研究了油酸鈉浮選體系下赤鐵礦浮選過程中的自載體作用。單礦物浮選試驗表明,粗粒赤鐵礦(?106 + 45 μm)的可浮性較好,當油酸鈉用量超過15 mg·L?1時,回收率可達到90%以上,而細粒赤鐵礦(?18 μm)的浮選回收率、浮選速率則較低;當粗?細赤鐵礦中粗粒和細粒的質量近似相等時,粗粒的“自載體”效果最強,浮選回收率增加的也最明顯,但粗粒過量則會導致粗粒對細粒赤鐵礦浮選的強化作用減弱。光學顯微鏡分析和E-DLVO理論計算表明,粗?細赤鐵礦顆粒間的相互作用能高于細粒赤鐵礦間的相互作用能,與細粒赤鐵礦相比,粗?細赤鐵礦間更容易發生團聚,這也是粗粒能夠強化細粒赤鐵礦浮選(自載體作用)的主要原因。但過量的粗粒赤鐵礦會增強其浮選過程中的“磨削、剪切”作用,導致粗粒的“自載體”效果減弱,浮選回收率降低。

     

    Abstract: Finely disseminated iron ores are a type of refractory iron ores that exist in many regions in China, where fine grind is essential to liberate iron minerals from gangue. The flotation process of fine particles is plagued with losses of recovery and selectivity, which are due to the low collision efficiencies of fine particles with bubbles, mechanical/hydraulic entrainment, and high specific surface area. Carrier flotation, which is based on the carrier effect of coarse particles, is one of the effective methods for fine particle flotation. However, scarce information is available in the literature with regard to the " self-carrier” effect and mechanism of coarse hematite particles during flotation, which are necessary and beneficial for the efficient utilization of refractory iron ore resources. In this paper, micro-flotation test, optical microscopy analysis, E-DLVO theory calculations, and particle aggregation kinetics were used to study the self-carrier effect of hematite flotation in the sodium oleate system. Flotation results show that the recovery of coarse hematite (?106 + 45 μm) could be up to 90% when the sodium oleate concentration is over 15 mg·L?1. However, for fine hematite (?18 μm) particles, the flotation recovery and flotation rate are relatively low. The highest recovery of fine-coarse hematite mixtures is obtained when the fine and coarse hematite are approximately equal in mass ratio, thereby indicating that the self-carrier effects are strongest; meanwhile, the improvement of coarse particles for flotation recovery gradually weakens with excessive coarseness in the mixtures. Optical microscopy analysis and E-DLVO theory calculations show that the interaction energies and aggregation tendencies between fine and coarse hematite particles are stronger than those among the fine hematite particles, which might be the main reasons that coarse particles could enhance the flotation performance of fine hematite particles. However, excessive coarse particles could strengthen the grinding/attrition effects during the flotation, thereby possibly weakening the self-carrier effects of coarse particles and resulting in decreased flotation recovery.

     

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