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Stability of a flat gas-liquid interface containing nonidentical spheres to gas transport: Toward an explanation of particle stabilization of gas bubbles

机译:包含不相同球体的平坦气-液界面对气体传输的稳定性:对气泡颗粒稳定的解释

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摘要

It is shown that a flat interface between a soluble gas and a liquid that contains an arbitrary number of partially wetting nonidentical spheres is linearly stable to slight perturbations caused by fluctuations in the gas volume. Stability is proved by showing that the rate of change of the volume of the gas with curvature of the interface is positive in the neighborhood of the equilibrium state of zero interface curvature. Physically, the volume fluctuations induce fluctuations in the curvature of the interface that would naturally lead to dissolution of gas into the liquid in the case of positive curvature and entry of gas into the bubble in the case of negative curvature, either of which restores equilibrium. This result may possibly explain the unusual long-term stability of gas bubbles covered by colloidal particles in the recent experiments of Du et al. (Du, Z.; Bilbao-Montoya, M. P.; Binks, B. P.; Dickinson, E.; Ettelaie, R.; Murray, B. S. Langmuir 2003, 19, 3106).
机译:结果表明,在可溶气体和包含任意数量的部分润湿的不相同球体的液体之间的平坦界面线性稳定,对于由气体体积波动引起的微扰。通过证明气体体积随界面曲率的变化率在零界面曲率的平衡状态附近为正,证明了稳定性。物理上,体积波动引起界面曲率的波动,在正曲率的情况下自然会导致气体溶解到液体中,而在负曲率的情况下自然会导致气体进入气泡,这两者都恢复了平衡。这一结果可能解释了在Du等人的最新实验中,胶体颗粒覆盖的气泡具有异常的长期稳定性。 (Du,Z .; Bilbao-Montoya,M.P .; Binks,B.P .; Dickinson,E .; Ettelaie,R .; Murray,B.S. Langmuir 2003,19,3106)。

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