Skip to main content

ETHNOS_APP

Home • Search • Journals • List 0

Effects of whey protein isolate on yuba

Microstructure, rheological and mechanical properties

Bibliographic Data

ID21295623
AuthorsYao Chen (0000-0002-3823-9485, Henan University of Science and Technology), Yuxin Han (0000-0003-4059-9890, Henan University of Science and Technology), Xinyu Wei (0009-0002-3683-0033, Henan University of Science and Technology), Weiwei Cao (0000-0002-7287-2217, Henan University of Science and Technology), Wenchao Liu (0000-0001-7877-0820, Henan University of Science and Technology), Linlin Li (0000-0003-1049-8749, Henan University of Science and Technology), Xu Duan (0000-0002-8884-1781, Henan University of Science and Technology), Duan Xu (Henan University of Technology), Ke Gao (0000-0002-7211-6403, CITIC Heavy Machinery Co., Ltd.), Junliang Chen (0000-0002-8946-0446, Henan University of Science and Technology), Guangyue Ren (0000-0002-5504-3599, Henan University of Science and Technology)
Year2026
Volume128
Issue5
Pages2024-2040
Publication date2026-04-09
Peer ReviewedYes
Open AccessNo
TypeARTICLE
VenueBritish Food Journal (JOURNAL)
Journal identifiersISSN: 0007-070X • E-ISSN: 1758-4108
PublisherEmerald (PUBLISHER)
DOI10.1108/bfj-08-2024-0867
OpenAlexW7116733482
LanguageEN
References cited63

Purpose As a traditional Asian soy product, yuba is a kind of protein–lipid film peeled from the soymilk surface through high-temperature incubation. However, yuba has poor mechanical properties. Therefore, this study aims to improve the mechanical properties and yield of yuba by supplementing whey protein isolate (WPI) into soymilk. Design/methodology/approach WPI was used to blend with soymilk at the level of 0, 4, 8, 12 and 16 g per 100 g soybeans (w/w) to prepare composite yuba. The soymilk with 0–16% WPI was characterized using fluorescence spectroscopy, surface hydrophobicity, zeta-potential measurements, particle size analysis. Moreover, the mechanical properties, yield and microstructure of composite soymilk-derived yuba were also studied. Findings The fluorescence spectroscopy revealed the formation of interactions between WPI and soymilk proteins during thermal treatment. With the increased WPI addition, the surface hydrophobicity value of composite soymilk increased from 562.82 ± 12.5 to 885.11 ± 3.15. The zeta-potential value of composite soymilk with 0–16% WPI increased from −27.89 ± 0.04 mV to −29.33 ± 0.08 mV. Additionally, the protein particles in soymilk aggregated to larger particle sizes due to the enhanced protein-protein interactions. The yuba with 12% WPI reached the maximum tensile strength and yield. The scanning electron microscopy results revealed that composite yuba with the higher level of WPI had a denser surface. The denser structure of composite yuba with WPI was formed through disulfide bonds. Originality/value This work firstly demonstrated that WPI could improve the quality of traditional yuba, which provided new insights for the application of WPI in protein-derived products

Composite number · Microstructure · Particle size · Ultimate tensile strength · Whey protein · Whey protein isolate · Food composition and properties · Polysaccharides Composition and Applications · Proteins in Food Systems

Citation velocityhistorical
Highly citedNo

Tools

Open DOI
Ethnos_APP • Open Source Project • MIT License • Frontend v2.0.0 • Privacy and Cookies • API Documentation: api.ethnos.app/docs • API Source Code: GitHub • DOI: 10.5281/zenodo.17049435 • Frontend Source Code: GitHub • DOI: 10.5281/zenodo.17050053 • cruz.rio.br • Expectantes Misericordiae