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首页> 外文期刊>International Journal of Technology >Visualization of Angular Particle-Bubble Surface Interaction using a High Speed Video Camera
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Visualization of Angular Particle-Bubble Surface Interaction using a High Speed Video Camera

机译:使用高速摄像机可视化角状气泡表面相互作用

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摘要

Flotation is an important process in mining industries. This process employs the bubble and hydrophobic properties of a particle to separate valuable mining particles from impurities. The most important phenomenon in determining flotation efficiency is the bubble-particle interaction; therefore, understanding this phenomenon is very important. The aim of this research is to study the mechanism of bubble-particle interactions with and without the addition of a collector. The experimental setup consists of a water container, bubble generator, particle feeding system, and an image capturing system. The water container is made from transparent material of a size large enough so that the wall’s effects on bubbles and particles can be neglected. Air bubbles are generated by a bubble generator which consists of a small nozzle and programmable syringe pump. A high speed video camera and halogen lamp backlighting system are used as image capturing devices. Observation of the images reveals that bubble-particle interaction follows the stages of bubble-particle collision, particle attached to the bubble, and particle detached from the bubble. The addition of a collector to the liquid affects the bubble-particle interactions.
机译:浮选是采矿业的重要过程。该方法利用颗粒的气泡和疏水特性将有价值的采矿颗粒与杂质分离。决定浮选效率的最重要现象是气泡-颗粒相互作用。因此,了解这种现象非常重要。这项研究的目的是研究添加和不添加收集器的气泡-颗粒相互作用的机理。实验装置包括一个水容器,气泡发生器,颗粒进料系统和图像捕获系统。该水容器由尺寸足够大的透明材料制成,因此可以忽略壁对气泡和颗粒的影响。气泡由气泡发生器产生,气泡发生器由小喷嘴和可编程注射泵组成。高速摄像机和卤素灯背光系统用作图像捕获设备。对图像的观察揭示了气泡-颗粒相互作用遵循以下步骤:气泡-颗粒碰撞,颗粒附着在气泡上以及颗粒从气泡分离。在液体中添加捕收剂会影响气泡与颗粒之间的相互作用。

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