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微流控装置中的乳液特性分析:界面张力与抗聚结稳定性综述。

Emulsion characterization via microfluidic devices: A review on interfacial tension and stability to coalescence.

机构信息

Department of Food and Nutrition, P.O. Box 66, 00014, University of Helsinki, Finland; Helsinki Institute of Sustainability Science (HELSUS), P.O. Box 65, 00014, University of Helsinki, Finland.

Department of Chemical Engineering and Applied Chemistry, University of Toronto, 200 College Street, Toronto, ON M5S 3E5, Canada.

出版信息

Adv Colloid Interface Sci. 2022 Jan;299:102541. doi: 10.1016/j.cis.2021.102541. Epub 2021 Oct 5.

Abstract

Emulsions have gained significant importance in many industries including foods, pharmaceuticals, cosmetics, health care formulations, paints, polymer blends and oils. During emulsion generation, collisions can occur between newly-generated droplets, which may lead to coalescence between the droplets. The extent of coalescence is driven by the properties of the dispersed and continuous phases (e.g. density, viscosity, ion strength and pH), and system conditions (e.g. temperature, pressure or any external applied forces). In addition, the diffusion and adsorption behaviors of emulsifiers which govern the dynamic interfacial tension of the forming droplets, the surface potential, and the duration and frequency of the droplet collisions, contribute to the overall rate of coalescence. An understanding of these complex behaviors, particularly those of interfacial tension and droplet coalescence during emulsion generation, is critical for the design of an emulsion with desirable properties, and for the optimization of the processing conditions. However, in many cases, the time scales over which these phenomena occur are extremely short, typically a fraction of a second, which makes their accurate determination by conventional analytical methods extremely challenging. In the past few years, with advances in microfluidic technology, many attempts have demonstrated that microfluidic systems, characterized by micrometer-size channels, can be successfully employed to precisely characterize these properties of emulsions. In this review, current applications of microfluidic devices to determine the equilibrium and dynamic interfacial tension during droplet formation, and to investigate the coalescence stability of dispersed droplets applicable to the processing and storage of emulsions, are discussed.

摘要

乳液在许多行业中都具有重要意义,包括食品、制药、化妆品、保健制剂、涂料、聚合物共混物和油类。在乳液生成过程中,新生成的液滴之间可能会发生碰撞,这可能导致液滴之间的聚并。聚并的程度取决于分散相和连续相的性质(例如密度、粘度、离子强度和 pH 值)以及系统条件(例如温度、压力或任何外部施加的力)。此外,乳化剂的扩散和吸附行为控制着形成液滴的动态界面张力、表面电位以及液滴碰撞的持续时间和频率,这对聚并的总速率有影响。了解这些复杂的行为,特别是乳液生成过程中的界面张力和液滴聚并行为,对于设计具有理想性能的乳液以及优化加工条件至关重要。然而,在许多情况下,这些现象发生的时间尺度非常短,通常只有几分之一秒,这使得传统分析方法很难准确地确定这些现象。在过去的几年中,随着微流控技术的进步,许多尝试已经证明,微流控系统具有微米级通道,可以成功地用于精确表征乳液的这些性质。在这篇综述中,讨论了微流控装置在确定液滴形成过程中的平衡和动态界面张力以及研究适用于乳液加工和储存的分散液滴聚并稳定性方面的应用。

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