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  4. Effects of Concentration and Type of Lipids on the Droplet Size, Encapsulation, Colour and Viscosity in the Oil-in-Water Emulsions Stabilised by Rapeseed Protein
 
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Effects of Concentration and Type of Lipids on the Droplet Size, Encapsulation, Colour and Viscosity in the Oil-in-Water Emulsions Stabilised by Rapeseed Protein

Type
Journal article
Language
English
Date issued
2023
Author
Kasprzak, Mirosław M.
Jarzębski, Maciej 
Smułek, Wojciech
Berski, Wiktor
Zając, Marzena
Östbring, Karolina
Ahlström, Cecilia
Ptasznik, Stanisław
Domagała, Jacek
Faculty
Wydział Nauk o Żywności i Żywieniu
Journal
Foods
ISSN
2304-8158
DOI
10.3390/foods12122288
Web address
http://www.mdpi.com/2304-8158/12/12/2288
Volume
12
Number
12
Pages from-to
art. 2288
Abstract (EN)
The objective of this study was to extract the rapeseed protein from by-products and further examine the effect of lab-made rapeseed protein on the droplet size, microstructure, colour, encapsulation and apparent viscosity of emulsions. Rapeseed protein-stabilised emulsions with an increasing gradient of milk fat or rapeseed oil (10, 20, 30, 40 and 50%, v/v) were fabricated using a high shear rate homogenisation. All emulsions showed 100% oil encapsulation for 30 days of storage, irrespective of lipid type and the concentration used. Rapeseed oil emulsions were stable against coalescence, whereas the milk fat emulsion showed a partial micro-coalescence. The apparent viscosity of emulsions raised with increased lipid concentrations. Each of the emulsions showed a shear thinning behaviour, a typical behaviour of non-Newtonian fluids. The average droplet size was raised in milk fat and rapeseed oil emulsions when the concentration of lipids increased. A simple approach to manufacturing stable emulsions offers a feasible hint to convert protein-rich by-products into a valuable carrier of saturated or unsaturated lipids for the design of foods with a targeted lipid profile.
Keywords (EN)
  • rapeseed protein

  • emulsion

  • microstructure

  • encapsulation of lipids

  • partial micro-coalescence

License
cc-bycc-by CC-BY - Attribution
Open access date
June 6, 2023
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