...
首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Yoon-Luttrell collision and attachment models analysis in flotation and their application on general flotation kinetic model
【24h】

Yoon-Luttrell collision and attachment models analysis in flotation and their application on general flotation kinetic model

机译:浮选过程中的Yoon-Luttrell碰撞和附着模型分析及其在一般浮选动力学模型中的应用

获取原文
获取原文并翻译 | 示例
           

摘要

We theoretically used the models of Yoon and Luttrell for collision and attachment efficiencies to show the effect of fluid flow condition, the effect of bubble size and velocity and particle surface hydrophobicity in flotation system, and in order to demonstrate the effect of particle density on the attachment behavior we incorporate the correct expression for the maximum collision angle developed by Dukhin collision model in the Yoon-Luttrell attachment efficiency applied for two minerals species such as the quartz and chalcopyrite. Then we used the expression of the analytical model that enables the calculation of the flotation rate constant of particles derived by Pyke et al., developed under turbulent condition and with including the efficiency of collision using the generalized Sutherland equation (GSE), the attachment efficiency using modified Dobby-Finch model, and stability of bubble-particle aggregate includes the various forces acting between the bubble and the attached particle. Some results are obtained revealing the positive inertial effect for the quartz and galena particles under defined flotation data conditions by incorporating in the flotation rate constant mentioned above, the collision and attachment efficiency models of Yoon-Luttrell developed for potential flow condition with assuming that the bubble surface is completely mobile and the particle inertia is ignored. The results show also the influence of the increasing of the bubble velocity to determine the particle size range between the models considering the inertial effect and those who ignored the particle Inertia.
机译:我们从理论上使用Yoon和Luttrell的碰撞和附着效率模型来显示流体条件,浮选系统中气泡大小和速度的影响以及颗粒表面疏水性的影响,并论证颗粒密度对浮选系统的影响。附着行为我们将适用于Dukhin碰撞模型在Yoon-Luttrell附着效率中应用的最大碰撞角的正确表达式应用于两种矿物,例如石英和黄铜矿。然后,我们使用解析模型的表达式来计算由Pyke等人得出的,在湍流条件下开发的颗粒的浮选速率常数,并包括使用广义Sutherland方程(GSE)的碰撞效率,附着效率使用改进的Dobby-Finch模型,气泡颗粒聚集体的稳定性包括作用在气泡和附着的颗粒之间的各种力。通过将上述浮选速率常数纳入Yoon-Luttrell的碰撞和附着效率模型,并假设气泡存在,通过在上述浮选常数中获得了一些结果,揭示了在限定的浮选数据条件下石英和方铅矿颗粒的正惯性效应。表面是完全可移动的,并且忽略了粒子惯性。结果还表明,在考虑惯性效应的模型和忽略颗粒惯性的模型之间,气泡速度增加对确定粒径范围的影响。

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