Title of article
Aggregation behavior of partially crystalline oil-in-water emulsions: Part I – Characterization under steady shear
Author/Authors
Fuller، نويسنده , , G. Thomas and Considine، نويسنده , , Thérèse and Golding، نويسنده , , Matt and Matia-Merino، نويسنده , , Lara and MacGibbon، نويسنده , , Alastair and Gillies، نويسنده , , Graeme، نويسنده ,
Issue Information
ماهنامه با شماره پیاپی سال 2015
Pages
8
From page
521
To page
528
Abstract
Shear-induced aggregation of 35 wt% partially crystalline oil-in-water emulsions was investigated under conditions causing jamming of partially coalesced fat globule aggregates formed under steady shear. Emulsions with different interfacial compositions and solid fat content (∼25–90%) were studied to probe their effect on the generation of a jamming transition over a range of shear rates (500–2000 s−1). Shear stable, sodium caseinate stabilized emulsions were rendered shear sensitive by the addition of Tween 20. Partial displacement of adsorbed sodium caseinate by Tween 20 prior to shear generally resulted in the formation of relatively stable aggregates whereas high displacement of protein led to the formation of less stable aggregates under shear. Evaluation of the dependency of aggregation time on shear rate revealed that interfacial composition primarily controlled aggregate formation rather than solid fat content. These findings show that interfacial protein functions both to regulate the formation of partially crystalline aggregates as well as the aggregate stability under shear. Furthermore, the steady shear method utilized here provides excellent utility for the study of a notoriously complex type of shear-induced colloidal aggregation.
Keywords
Interface , Partial coalescence , Aggregation , shear , sodium caseinate , emulsion
Journal title
Food Hydrocolloids
Serial Year
2015
Journal title
Food Hydrocolloids
Record number
1952550
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