Study on the Rheological Properties and Volatile Release of Cold-Set Emulsion-Filled Protein Gels

流变学 乳状液 化学 分离乳清蛋白粉 色谱法 动态力学分析 化学工程 分配系数 乳清蛋白 模数 材料科学 聚合物 有机化学 复合材料 工程类
作者
Like Mao,Yrjö H. Roos,Song Miao
出处
期刊:Journal of Agricultural and Food Chemistry [American Chemical Society]
卷期号:62 (47): 11420-11428 被引量:92
标识
DOI:10.1021/jf503931y
摘要

Emulsion-filled protein gels (EFP gels) were prepared through a cold-set gelation process, and they were used to deliver volatile compounds. An increase in the whey protein isolate (WPI) content from 4 to 6% w/w did not show significant effect on the gelation time, whereas an increase in the oil content from 5 to 20% w/w resulted in an earlier onset of gelation. Gels with a higher WPI content had a higher storage modulus and water-holding capacity (WHC), and they presented a higher force and strain at breaking, indicating that a more compact gel network was formed. An increase in the oil content contributed to gels with a higher storage modulus and force at breaking; however, this increase did not affect the WHC of the gels, and gels with a higher oil content became more brittle, resulting in a decreased strain at breaking. GC headspace analysis showed that volatiles released at lower rates and had lower air-gel partition coefficients in EFP gels than those in ungelled counterparts. Gels with a higher WPI content had lower release rates and partition coefficients of the volatiles. A change in the oil content significantly modified the partition of volatiles at equilibrium, but it produced a minor effect on the release rate of the volatiles. The findings indicated that EFP gels could be potentially used to modulate volatile release by varying the rheological properties of the gel.
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