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薄垂直液膜中的边缘再生

Marginal Regeneration in Thin Vertical Liquid Films.

作者信息

Nierstrasz VA, Frens G

机构信息

Laboratory of Physical Chemistry, Delft University of Technology, Julianalaan 136, Delft, 2628 BL, The Netherlands

出版信息

J Colloid Interface Sci. 1998 Nov 15;207(2):209-217. doi: 10.1006/jcis.1998.5646.

Abstract

Marginal regeneration is the rate-determining drainage mechanism in mobile vertical liquid films stabilized with surfactants. Mysels, Frankel, and Shinoda explained this process from (thermal) thickness fluctuations, like capillary waves. The Laplace underpressure in the Plateau border would exert a larger force on a thick, rather than on a thinner film element. This force unbalance would make film elements of different thicknesses move in opposite directions so that they are exchanged at the border. However, experiments and simulations prove that marginal regeneration cannot be the result of thickness fluctuations. Our alternative view is, that marginal regeneration is due to surface tension gradients between the film and its borders. Drainage of film elements into the lower Plateau border causes a local excess of surfactant, and thereby local differences in surface tension. This causes film elements to flow and generates the thickness differences between the absorbed and emerging film elements. The rates of the Marangoni flows reflect the surface dilational properties. This Marangoni effect is a consequence of the compression of the film surface when a film element flows into the lower Plateau border. Marginal regeneration is then a mechanism which returns the surfactant back into the film. Copyright 1998 Academic Press.

摘要

边缘再生是表面活性剂稳定的移动垂直液膜中的速率决定排水机制。迈塞尔、弗兰克尔和筱田从(热)厚度波动(如毛细波)的角度解释了这一过程。在 Plateau 边界处的拉普拉斯负压对较厚的膜元施加的力要大于对较薄膜元施加的力。这种力的不平衡会使不同厚度的膜元向相反方向移动,从而在边界处进行交换。然而,实验和模拟证明边缘再生不可能是厚度波动的结果。我们的另一种观点是,边缘再生是由于液膜与其边界之间的表面张力梯度。膜元排入较低的 Plateau 边界会导致表面活性剂局部过量,从而产生表面张力的局部差异。这会导致膜元流动,并在被吸收和新出现的膜元之间产生厚度差异。马兰戈尼流动的速率反映了表面膨胀特性。这种马兰戈尼效应是当一个膜元流入较低的 Plateau 边界时膜表面压缩的结果。边缘再生于是一种将表面活性剂重新返回液膜的机制。版权所有 1998 年学术出版社。

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