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水和电解质溶液中的气泡-固体相互作用。

Bubble-solid interactions in water and electrolyte solutions.

作者信息

Pushkarova Rada A, Horn Roger G

机构信息

Ian Wark Research Institute, University of South Australia Mawson Lakes, Adelaide, Australia.

出版信息

Langmuir. 2008 Aug 19;24(16):8726-34. doi: 10.1021/la8007156. Epub 2008 Jul 26.

Abstract

Surface forces between an air bubble and a flat mica surface immersed in aqueous electrolyte solutions have been investigated using a modified surface force apparatus. An analysis of the deformation of the air bubble with respect to the mutual position of the bubble and the mica surface, the capillary pressure, and the disjoining pressure allows the air-liquid surface electrical potential to be determined. The experiments show that a long-range, double-layer repulsion acts between the mica (which is negatively charged) and an air bubble in water and in various electrolyte solutions at low concentration, thereby indicating that the air bubble surface is negatively charged. However, there is clear evidence that charge regulation occurs at the air-water interface to maintain a constant surface potential, and as a result of this, the charge at this interface changes from negative to positive as the bubble approaches the mica surface. Because of the attraction that arises as a result of the charge reversal, a finite force is required to separate the bubble from the mica, though the mica remains wetted by the aqueous phase. At the low concentrations investigated, the potential on the gas-liquid interface is independent of the electrolyte type within experimental uncertainty.

摘要

使用改进的表面力装置研究了气泡与浸没在水电解质溶液中的平坦云母表面之间的表面力。通过分析气泡相对于气泡与云母表面的相互位置、毛细管压力和分离压力的变形,可以确定气液表面电势。实验表明,在水和各种低浓度电解质溶液中,带负电荷的云母与气泡之间存在长程双层排斥力,这表明气泡表面带负电荷。然而,有明确证据表明,气-水界面会发生电荷调节以维持恒定的表面电势,因此,随着气泡靠近云母表面,该界面处的电荷从负变为正。由于电荷反转产生的吸引力,尽管云母仍被水相润湿,但需要有限的力才能将气泡与云母分离。在所研究的低浓度下,在实验误差范围内,气液界面上的电势与电解质类型无关。

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