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Industry Test on Phosphorus Removal and Direct Reduction of High-phosphorus Oolitic Hematite Ore

机译:磷去除和直接减少高磷鲕粒矿石的行业试验

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Industry test on phosphorus removal and direct reduction of the "Ningxiang type" high-phosphorus oolitic hematite ore has been carried out in a tunnel kiln on the basis of laboratory experiment. The iron grade and phosphorus content of the initial sample are 42.46% and 0.867%, respectively. The results showed that high-phosphorus oolitic hematite could be exploited on industrial scale, with the new process direct reduction roasting - grinding - magnetic separation, and that the final concentrate with an iron grade 92.56%, iron recovery 82.77% and phosphorus content 0.089% was obtained under the optimal conditions. Besides, X-ray diffraction (XRD) and scanning electron microscope with X-ray energy dispersive spectrum (SEM-EDS) were used to analysis the mechanism of phosphorus removal and direct reduction. It was shown that oolitic structure was destroyed, and metallic iron particle coarsening was obvious, besides fluorapatite particles were dispersed in the gangue by diffusion during the reduction roasting process. The liberation of metallic iron and gangue can be achieved by grinding, so high iron grade and low phosphorus content concentrate can be obtained after magnetic separation.
机译:在实验室实验的基础上,在隧道窑中进行了产业试验,直接减少“宁乡”高磷鲕粒醚矿石。初始样品的铁级和磷含量分别为42.46%和0.867%。结果表明,高磷鲕粒赤铁矿可以在工业规模上利用,具有新的过程直接减少焙烧 - 研磨 - 磁性分离,并将最终浓缩物具有铁级92.56%,铁回收率82.77%,磷含量为0.089%在最佳条件下获得。此外,使用具有X射线能量分散频谱(SEM-EDS)的X射线衍射(XRD)和扫描电子显微镜来分析磷去除和直接减少的机制。结果表明,鲕粒结构被破坏,并且金属铁颗粒粗糙度明显,除了在减少烘焙过程中通过扩散在煤矸石中分散在煤矸石之外。通过研磨可以实现金属钢和煤矸石的释放,因此磁性分离后可以获得高铁级和低磷含量浓缩物。

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