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首页> 外文期刊>International Journal of Environment and Pollution >Air bubble and oil droplet interactions in centrifugal fields during air-sparged hydrocyclone flotation
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Air bubble and oil droplet interactions in centrifugal fields during air-sparged hydrocyclone flotation

机译:气浮水力气旋浮选过程中离心场中的气泡和油滴相互作用

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摘要

The interactions of air bubbles and oil droplets in centrifugal flotation have been considered with respect to process conditions present during Air-sparged Hydrocyclone (ASH) flotation. Encounter efficiency of oil droplets with air bubbles has been found to be significantly smaller when compared to encounter efficiency of mineral particles. Collision and sliding contact times have been determined. Collision has been found to be insufficient for successful contact between oil droplets and air bubbles while sliding allows for film rupture depending on specific system conditions. Although the tenacity of oil droplet attachment to an air bubble is believed to be greater than the tenacity of a mineral particle, emulsification makes oil flotation in centrifugal devices with large dissipation of energy inefficient and hence requires the use of high molecular weight polymeric flocculants.
机译:相对于空气喷射水力旋流器(ASH)浮选过程中存在的工艺条件,已经考虑了离心浮选中气泡和油滴的相互作用。与遇到矿物颗粒的效率相比,发现带有气泡的油滴的遇到效率要小得多。已经确定了碰撞和滑动接触时间。已经发现碰撞不足以使油滴和气泡成功接触,而滑动则取决于特定的系统条件而使薄膜破裂。尽管认为附着在气泡上的油滴的强度大于矿物颗粒的强度,但是乳化使离心装置中的油浮起具有能量的低耗散性,因此需要使用高分子量的聚合物絮凝剂。

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