首页> 外文会议>2011 International Symposium on Water Resource and Environmental Protection >Imaging study of surfactant effect on bubble behaviors in froth flotation
【24h】

Imaging study of surfactant effect on bubble behaviors in froth flotation

机译:表面活性剂对泡沫浮选中气泡行为影响的成像研究

获取原文

摘要

Bubble motion is fundamental to the performance of flotation system, but single bubble motion under flotation-related conditions is a relatively neglected research field. The objective of this study is to characterize the behaviors of single bubbles with 2 ∼ 5 millimeter in diameter in the presence of surfactant. Experiments were carried out to investigate the effect of surfactant on trajectory, shape and velocity of single bubbles rising in liquid. Distilled water and Triton X-100 solutions with various concentrations were chosen as liquid phases. The motion of single bubbles was recorded using high-speed camera in a laboratory scale flotation column. Trajectory, shape and velocity of single bubbles were then determined using the image process technique. The results clearly show that bubble trajectory takes more regular pattern in Triton X-100 solution than in pure water. It is also found that the right amount of surfactant used here can dampen bubble deformation, reduce shape oscillation amplitude and slow down the bubble rising velocity significantly due to the Marangoni effect. Compared to pure water, Triton X-100 of concentration 0.15×10−3 mol/L reduces the oscillation amplitude of the aspect ratio of the bubble by 57% while Triton X-100 of concentration 0.05×10−3 mol/L slows the terminal velocity of the bubble by 35%.
机译:气泡运动是浮选系统性能的基础,但在浮选相关条件下的单个气泡运动是一个相对被忽略的研究领域。这项研究的目的是表征在表面活性剂存在下直径为2到5毫米的单个气泡的行为。进行实验以研究表面活性剂对液体中单个气泡上升的轨迹,形状和速度的影响。选择蒸馏水和各种浓度的Triton X-100溶液作为液相。在实验室规模的浮选柱中使用高速相机记录单个气泡的运动。然后使用图像处理技术确定单个气泡的轨迹,形状和速度。结果清楚地表明,Triton X-100溶液中的气泡轨迹比纯水中的气泡轨迹更规则。还发现由于Marangoni效应,此处使用适量的表面活性剂可以抑制气泡变形,减小形状振荡幅度并显着降低气泡上升速度。与纯水相比,浓度为0.15×10 −3 mol / L的Triton X-100将气泡长宽比的振荡幅度降低了57%,而浓度为0.05×10的Triton X-100 -3 mol / L使气泡的末端速度降低35%。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号