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颗粒在稳定泡沫和乳液中的作用。

The role of particles in stabilising foams and emulsions.

作者信息

Hunter Timothy N, Pugh Robert J, Franks George V, Jameson Graeme J

机构信息

Centre for Multiphase Processes, The University of Newcastle, Callaghan, NSW 2308, Australia.

出版信息

Adv Colloid Interface Sci. 2008 Mar 18;137(2):57-81. doi: 10.1016/j.cis.2007.07.007. Epub 2007 Aug 7.

Abstract

The use of particles as foam and emulsion stabilising species, with or without surfactants, has received great interest in recent years. The majority of work has studied the effects of particles as stabilisers in emulsion systems, but recent successes has widened consideration into foams, where industries such as flotation and food processing have encountered the effects of particle stabilisation for many years. This review seeks to clarify studies into emulsions, highlighting new research in this area, and relate similarities and differences to foam systems. Past research has focused on defining the interaction mechanisms of stability, such as principles of attachment energies, particle-particle forces at the interface and changes to the interfilm, with a view to ascertain conditions giving optimum stability. Studied conditions include effects of particle contact angle, aggregation formations, concentration, size and interactions of other species (i.e. surfactant). Mechanisms can be complex, but overall the principle of particles creating a steric barrier to coalescence, is a straitforward basis of interaction. Much research in emulsions can be applied to foam systems, however evidence would suggest foam systems are under a number of additional constraints, and the stability 'window' for particles is smaller, in terms of size and contact angle ranges. Also, because of increased density differences and interfilm perturbations in foam systems, retardation of drainage is often as important to stability as inhibiting coalescence.

摘要

近年来,无论有无表面活性剂,将颗粒用作泡沫和乳液的稳定物质都受到了广泛关注。大多数研究工作都聚焦于颗粒作为乳液体系稳定剂的作用,但最近的成果拓宽了研究范围,开始考虑泡沫体系,在浮选和食品加工等行业,颗粒稳定化的影响已经存在多年。本综述旨在阐明乳液相关研究,突出该领域的新研究,并阐述与泡沫体系的异同。过去的研究主要集中在确定稳定性的相互作用机制,例如附着能原理、界面处的颗粒间作用力以及膜间变化,以期确定实现最佳稳定性的条件。研究的条件包括颗粒接触角、聚集形态、浓度、尺寸以及其他物质(如表面活性剂)的相互作用的影响。作用机制可能很复杂,但总体而言,颗粒形成阻止聚结的空间位垒这一原理是相互作用的直接基础。乳液方面的许多研究都可应用于泡沫体系,然而有证据表明,泡沫体系受到一些额外限制,就尺寸和接触角范围而言,颗粒的稳定“窗口”更小。此外,由于泡沫体系中密度差异增大和膜间扰动,排水延缓对稳定性的重要性往往与抑制聚结相当。

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