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A study of interactions between an air bubble and a solid surface in a liquid.

机译:研究气泡与液体中固体表面之间的相互作用。

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摘要

As one of the most critical steps to recover valuable particles from a slurry using flotation, knowledge of the drainage of the thin liquid film between an air bubble and a solid surface is required. The main focus of this thesis is to develop and use an integrated thin film drainage apparatus (ITFDA) to investigate the physicochemical properties of the aqueous liquid film between an air bubble and a solid surface under dynamic conditions.;The ITFDA was designed to measure drainage dynamics of thin liquid films confined between a solid particle, a gas bubble or/and an immiscible liquid droplet. Equipped with a bimorph force sensor, a computer-interfaced video capture device and a data acquisition system, this custom-made ITFDA allowed us to measure directly and simultaneously hydrodynamic forces, true liquid film drainage time under a well controlled external force, receding and advancing contact angles, capillary force, and detachment force between an air bubble or oil droplet and a solid, a liquid or an air bubble in an immiscible liquid. Using a diaphragm of a high frequency speaker as the drive mechanism for the air bubble or oil droplet attached to a capillary tube, this new device is capable of accurately and independently measuring forces over a wide range of hydrodynamic conditions, including bubble approach and retract velocity up to 50 mm/s and displacement range up to 1 mm.;Using this device, interactions between an air bubble and a hydrophilic or hydrophobized glass sphere were measured. The results showed that the ITFDA was capable to accurately measure hydrodynamic resistance between air bubbles and solid particles in aqueous solutions, providing direct evidence of the critical roles of hydrodynamic forces and particle hydrophobicity in air bubble and particle interactions. The results from this study also showed a close relationship between bubble drive velocity, solid hydrophobicity and force barrier before three phase contact of air bubbles on hydrophobized solids in aqueous solutions. Solution pH, salt concentration and surfactant all have effects on the solid hydrophobicity, and hence change the bubble-hydrophobic solid interactions.
机译:作为使用浮选法从浆液中回收有价值的颗粒的最关键步骤之一,需要了解薄的液膜在气泡和固体表面之间的排放。本文的主要重点是开发和使用集成的薄膜排水装置(ITFDA)来研究在动态条件下气泡和固体表面之间的水性液膜的理化性质。限制在固体颗粒,气泡或/和不溶混的液滴之间的液体薄膜的动力学特性。定制的ITFDA配备了双压电晶片力传感器,计算机接口的视频捕获设备和数据采集系统,使我们能够同时直接测量流体动力,在受控外力作用下的真实液膜排水时间,后退和前进气泡或油滴与不混溶液体中的固体,液体或气泡之间的接触角,毛细作用力和分离力。该新型设备使用高频扬声器的膜片作为附着在毛细管上的气泡或油滴的驱动机构,能够准确,独立地测量各种流体力学条件下的力,包括气泡接近和回缩速度高达50 mm / s,位移范围高达1 mm 。;使用该设备,测量了气泡与亲水性或疏水性玻璃球之间的相互作用。结果表明,ITFDA能够准确测量水溶液中气泡与固体颗粒之间的流体动力阻力,直接证明了流体动力和颗粒疏水性在气泡与颗粒相互作用中的关键作用。这项研究的结果还表明,在气泡与水溶液中的疏水化固体进行三相接触之前,气泡驱动速度,固体疏水性和力屏障之间存在密切关系。溶液的pH值,盐浓度和表面活性剂都对固体疏水性有影响,因此改变了气泡-疏水性固体之间的相互作用。

著录项

  • 作者

    Wang, Louxiang.;

  • 作者单位

    University of Alberta (Canada).;

  • 授予单位 University of Alberta (Canada).;
  • 学科 Engineering Chemical.;Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 240 p.
  • 总页数 240
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 老年病学;
  • 关键词

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