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March 27, 2026Colloids and Interfaces2 citationsOpen Access

Rheology of Non-Dilute Emulsions: A Comprehensive Review

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RPRajinder Pal

Key Points

  • This review aims to explore the complex rheological behaviors of non-dilute emulsions and identify existing knowledge gaps.
  • Comprehensive analysis of non-dilute emulsion rheology
  • Discussion of hard-sphere and deformable droplet models
  • Review of the effects of surfactants and additives
  • Investigation of dynamic rheology for oil-water interfaces
  • Non-dilute emulsions demonstrate both Newtonian and non-Newtonian characteristics
  • Emulsion behaviors like shear-thinning and yield stress are noted
  • The influence of electric charge and interfacial effects on rheology is detailed
  • Gaps in theoretical understanding and empirical models of non-dilute emulsions are identified

Abstract

Non-dilute emulsions are emulsions where the concentration of the droplets is high enough for the neighbouring droplets to interact with each other hydrodynamically but is still smaller than the packed bed concentration where the droplets are packed and deformed against each other. Thus, they cover a broad range of droplet concentrations. Many emulsions encountered in industrial applications fall under this category. Non-dilute emulsions exhibit rich rheological behaviour, from a simple Newtonian fluid to a highly non-Newtonian fluid, reflecting shear-thinning, shear-thickening, yield stress, viscoelasticity, etc. In this article, the rheology of non-dilute emulsions is reviewed comprehensively. Emulsions of hard-sphere-type droplets and deformable droplets, with and without surfactants, are covered. The mathematical models describing the rheological behaviour of non-dilute emulsions are discussed. The influences of electric charge and interfacial rheology on the rheological behaviour of emulsions are covered in detail. The flocculation of droplets caused by different mechanisms, such as depletion and bridging induced by additives, and their effect on emulsion rheology are investigated thoroughly. Finally, the dynamic rheology of non-dilute emulsions is discussed, covering both pure oil–water interfaces and additive-laden interfaces. The mathematical models describing the dynamic rheological behaviour of non-dilute emulsions are described. Based on the existing theoretical and empirical models, it is possible to a priori predict the rheology of non-dilute emulsions. However, serious gaps in the existing knowledge on non-dilute emulsion rheology remain. This review identifies the gaps in existing knowledge and points out future directions in research related to non-dilute emulsion rheology.

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Cite This Study

Rajinder Pal (2026) studied this question.

synapsesocial.com/papers/69c6209315a0a509bde19127https://doi.org/10.3390/colloids10020028
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