首页> 外文会议>International Heavy Minerals Conference, Jun 18-19, 2001, Fremantle, Western Australia >The Effect of Power Ultrasound in the Production of Synthetic Rutile by the Becher Process
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The Effect of Power Ultrasound in the Production of Synthetic Rutile by the Becher Process

机译:功率超声在Becher法生产合成金红石中的作用

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Power ultrasound may be applied to enhancing the processing of minerals. The enhanced performance is achieved through the very localised high-energy release at the mineral surface from the collapse of cavitation bubbles produced by power ultrasound. This gives rise to two effects: initially, the rapid cleaning of mineral surfaces - of oxidation products and coatings of fine adhering gangue minerals - and the attenuation of the boundary layer at the mineral surface during leaching, which allows fresh leachant to contact the surface more readily. Work carried out at CSIRO in conjunction with Tiwest Joint Venture has demonstrated that it is feasible to apply ultrasound to the leaching process in order to enhance the removal of contaminating minerals. When applied to the production of synthetic rutile from reduced ilmenite produced by the Becher process, the use of ultrasound proved beneficial to both the aeration and the final acid leach process. The effect of ultrasound was less marked in the case of the aeration process, once the method of introducing and dispersing the air was optimised. In the subsequent acid leaching step of the Becher process it was found that the application of power ultrasound could reduce leaching time to about one quarter of the time required when only agitation was employed. Projected capital and operating costs, based on currently available commercial equipment, are also presented, and indicate that the use of ultrasound is commercially as well as technically feasible.
机译:功率超声可以应用于增强矿物质的加工。通过功率超声产生的空化气泡坍塌,矿物表面上非常局部的高能释放可实现增强的性能。这产生了两个效果:首先是矿物表面的快速清洁-氧化产物和细密煤石矿物涂层的浸出-浸出过程中矿物表面边界层的衰减,这使新鲜的浸出剂更多地接触表面。容易。 CSIRO与Tiwest合资公司合作进行的工作表明,将超声应用于浸出过程以提高对污染性矿物的去除是可行的。当用于通过Becher工艺生产的还原钛铁矿生产合成金红石时,使用超声波已证明对曝气和最终酸浸工艺均有利。一旦优化了引入和分散空气的方法,在充气过程中,超声波的作用就不那么明显了。在随后的Becher工艺酸浸步骤中,发现使用功率超声可以将浸出时间减少到仅采用搅拌时所需时间的四分之一左右。还介绍了基于当前可用的商用设备的预计资金和运营成本,并表明使用超声波在商业上和技术上都是可行的。

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