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DIRECT MEASUREMENT OF PARTICLE-BUBBLE INTERACTION FORCES USING ATOMIC FORCE MICROSCOPY

机译:原子力显微镜直接测量颗粒相互作用力

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摘要

Interaction forces between a hydrophilic silica particle and an air bubble were measured by atomic force microscopy using simplified model systems with deionized water and dilute KCI solutions. Contributions from the hydrodynamic force were minimized by using a low piezo speed. Particle-bubble separation distance and the bubble spring constant were calculated from linear regression of the piezo extension versus cantilever deflection. The bubble surface potential was then estimated from fitting the AFM-measured forces to the Hogg-Healy-Fuerstenau (HHF) model, using the surface element integration (SEI) method. Surface potentials obtained for the bubble at a low applied force were comparable with the literature data, suggesting that the simplified model used here can give a reasonable estimation of the bubble surface potential under moderate applied forces. Interaction forces between a silica particle and an air bubble were also measured at different locations on the air bubble surface. The force curves obtained at the edges of the bubble fitted very well to the theoretical force curves regardless of the applied force, while curves obtained at the center and halfway to the center, were more difficult to fit, in particular at higher applied forces (> 13 nN), suggesting that force curves obtained at the edges of the air bubble might be less prone to deformation effects.
机译:使用去离子水和稀KCI溶液,使用简化的模型系统,通过原子力显微镜法测量亲水性二氧化硅颗粒与气泡之间的相互作用力。通过使用低压电速度,可将来自水动力的贡献最小化。从压电延伸与悬臂挠度的线性回归计算出气泡的分离距离和弹簧常数。然后,使用表面元素集成(SEI)方法,通过将AFM测量的力拟合到Hogg-Healy-Fuerstenau(HHF)模型,来估算气泡表面电势。在较低的外加力下获得的气泡表面电势与文献数据相当,这表明此处使用的简化模型可以合理估计在中等外加力下的气泡表面电势。还在气泡表面上的不同位置处测量了二氧化硅颗粒与气泡之间的相互作用力。无论施加力如何,气泡边缘处获得的力曲线都非常适合理论力曲线,而在中心和中心的一半处获得的曲线更难拟合,尤其是在较高的施加力下(> 13 nN),表明在气泡边缘处获得的力曲线可能不太容易产生变形效果。

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