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  4. Effects of Heat Treatment Duration on the Electrical Properties, Texture and Color of Polymerized Whey Protein
 
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Effects of Heat Treatment Duration on the Electrical Properties, Texture and Color of Polymerized Whey Protein

Type
Journal article
Language
English
Date issued
2022
Author
Bielska, Paulina 
Cais-Sokolińska, Dorota 
Dwiecki, Krzysztof 
Faculty
Wydział Nauk o Żywności i Żywieniu
Journal
Molecules
ISSN
1420-3049
DOI
10.3390/molecules27196395
Web address
https://www.mdpi.com/1420-3049/27/19/6395
Volume
27
Number
19
Pages from-to
art. 6395
Abstract (EN)
In this research effects of heat treatment duration on the electrical properties (zeta potential and conductivity), texture and color of polymerized whey protein (PWP) were analyzed. Whey protein solutions were heated for 30 min to obtain single-heated polymerized whey protein (SPWP). After cooling to room temperature, the process was repeated to obtain double-heated polymerized whey protein (DPWP). The largest agglomeration was demonstrated after 10 min of single-heating (zeta potential recorded as −13.3 mV). Single-heating decreased conductivity by 68% and the next heating cycle by 54%. As the heating time increased, there was a significant increase in the firmness of the heated solutions. Zeta potential of the polymerized whey protein correlated with firmness, consistency, and index of viscosity, the latter of which was higher when the zeta potential (r = 0.544) and particle size (r = 0.567) increased. However, there was no correlation between zeta potential and color. This research has implications for future use of PWP in the dairy industry to improve the syneretic, textural, and sensory properties of dairy products.
Keywords (EN)
  • electrical properties

  • zeta potential

  • conductivity

  • texture

  • color

  • whey protein

  • heat treatment

License
cc-bycc-by CC-BY - Attribution
Open access date
September 27, 2022
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