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A Novel Method for Improving Low-Temperature Flotation Performance of Nonpolar Oil in the Molybdenite Flotation

机译:一种提高钼矿浮选中非极性油低温浮选性能的新方法

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Nonpolar hydrocarbon oil (NHO) is one of the most extensively used collectors in the flotation of molybdenite due to its excellent selectivity. However, NHO has low sensibility at pulp temperature. At low temperatures (283 K), although more kerosene is used, the recovery of molybdenite flotation is still lower than at room temperature. In this study, magnetizing treatment, which is an efficient, low-cost, innovative, and environmentally friendly emulsification method, was used to improve the flotation performance of NHO in low-temperature molybdenite flotation. The test results showed that, compared with unmagnetized kerosene (UMK), the optimum dosage of magnetized kerosene (MK) could be reduced by 11% at 298 K. At the same dosage of kerosene, the flotation recovery of MK was 3% higher than UMK at 278 K. The surface tension measurement results showed that the surface tension of MK rose periodically as the magnetic field intensity increased, and there was a maximum surface tension within each period. Further, the magnetic field intensity had the maximum flotation recovery of molybdenite at the maximum surface tension of MK. Combined with the analysis based on the Girifalco–Good theory and the static drop volume method of interfacial tension, the interfacial tension of kerosene–water was shown to decrease with the increase of the surface tension of kerosene. This finding indicates that the dispersibility of kerosene in pulp could be improved by reducing the size of oil droplets, thereby improving the molybdenite flotation recovery of kerosene at low-temperature pulp. It is helpful to improve the flotation recovery of molybdenite using NHO as a collector for low-temperature pulp (283 K).
机译:非极性烃油(NHO)由于其优异的选择性,是在辉钼矿浮选中使用最广泛的捕收剂之一。但是,NHO在纸浆温度下灵敏度较低。在低温(<283 K)下,尽管使用了更多的煤油,但辉钼矿浮选的回收率仍然低于室温。在这项研究中,磁化处理是一种高效,低成本,创新且环保的乳化方法,被用于改善低温辉钼矿浮选中NHO的浮选性能。试验结果表明,与未磁化煤油(UMK)相比,在298 K下磁化煤油(MK)的最佳用量可降低11%。在相同煤油剂量下,MK的浮选回收率比未磁化煤油(UMK)高3%。 UMK在278K。表面张力测量结果表明,MK的表面张力随着磁场强度的增加而周期性地上升,并且在每个周期内都有一个最大的表面张力。另外,磁场强度在MK的最大表面张力下具有最大的辉钼矿浮选恢复率。结合基于Girifalco–Good理论的分析和界面张力的静态滴体积法,煤油-水的界面张力随煤油表面张力的增加而降低。该发现表明,煤油在纸浆中的分散性可通过减小油滴的大小而得到改善,从而提高了低温纸浆中煤油的辉钼矿浮选回收率。使用NHO作为低温纸浆(<283 K)的捕收剂,有助于改善辉钼矿的浮选回收率。

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