JOURNAL ARTICLE

Droplet Size Distribution in Emulsions

Abstract

The droplet size in emulsions is known to affect the rheological properties and plays a crucial role in many applications of emulsions. Despite its importance, the underlying mechanisms governing droplet size in emulsification remain poorly understood. We investigate the average drop size and size distribution upon emulsification with a high-shear mixer for model oil-in-water emulsions stabilized by a surfactant. The size distribution is found to be a log-normal distribution resulting from the repetitive random breakup of drops. High-shear emulsification, the usual way of making emulsions, is therefore found to be very different from turbulent emulsification given by the Kolmogorov-Hinze theory, for which power-law distributions of the drop size are expected. In agreement with this, the mean droplet size does not follow a scaling with the Reynolds number of the emulsification flow but rather a capillary number scaling based on the viscosity of the continuous phase.

Keywords:
Breakup Drop (telecommunication) Rheology Reynolds number Scaling Turbulence Particle size Emulsion Membrane emulsification Pulmonary surfactant Materials science Power law Mechanics Particle-size distribution Capillary action Viscosity Thermodynamics Chemistry Physics Mathematics Composite material Statistics

Metrics

50
Cited By
7.94
FWCI (Field Weighted Citation Impact)
35
Refs
0.97
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Fluid Dynamics and Mixing
Physical Sciences →  Engineering →  Biomedical Engineering
Fluid Dynamics and Heat Transfer
Physical Sciences →  Engineering →  Computational Mechanics
Innovative Microfluidic and Catalytic Techniques Innovation
Physical Sciences →  Engineering →  Biomedical Engineering

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