Effects of Spice Treatment Methods on the Flavor Modification and Quality Characteristics of Surimi/Pea Protein Mixed Gels

To develop a flavor-modification strategy for silver carp surimi products, pea protein was used to partially replace surimi protein at a substitution level of 30% (w/w) to prepare surimi/pea protein mixed gels (SPGs). Two spice treatment methods were compared: deodorized SPG prepared by adding spice water during gel preparation (DSPG-A) and deodorized SPG incubated in spice water during the second-stage heating (DSPG-I). The effects of these treatments on odor characteristics, volatile flavor composition, gel quality, and processing energy consumption were investigated. Sensory evaluation showed that DSPG-I was more effective in reducing fishy and beany odors and produced a braised flavor profile dominated by spicy aroma, suggesting its potential for flavor modification. Gas chromatography–ion mobility spectrometry (GC-IMS) further revealed that DSPG-I enriched characteristic spice-derived aroma compounds and showed increased intensities of roasted aroma-related compounds, including 2-furanmethanol acetate, and benzaldehyde. Quality analysis showed that no significant differences in gel strength or water-holding capacity were observed between the two spice-treated groups (DSPG-A and DSPG-I). Notably, DSPG-I significantly increased the surface a* and b* values of the mixed gels (p < 0.05), giving the products a characteristic color similar to that of braised products. A theoretical energy consumption estimation indicated that the comprehensive energy consumption for producing ready-to-eat surimi products using DSPG-I was 79.98 kgce/t, which was lower than that of the conventional process at 100.06 kgce/t, corresponding to theoretical energy-saving rate of approximately 20%. Overall, DSPG-I shows potential for application in the processing of ready-to-eat freshwater surimi products.

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Publication Details

Journal
Foods
Published
2026-09-24
DOI
https://doi.org/10.3390/foods15193407
Primary Topic
Meat and Animal Product Quality
Type
article
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article

Effects of Spice Treatment Methods on the Flavor Modification and Quality Characteristics of Surimi/Pea Protein Mixed Gels

Jianfeng Lu, Zhina Chen, Tao Ye, Mengying Ren et al.
Foods
Meat and Animal Product Quality
article

Effects of Spice Treatment Methods on the Flavor Modification and Quality Characteristics of Surimi/Pea Protein Mixed Gels

Jianfeng Lu, Zhina Chen, Tao Ye, Mengying Ren, Yuchao Zhang, Hongtao Zhu, Lin Lin, Leman Bu
article en

Abstract

To develop a flavor-modification strategy for silver carp surimi products, pea protein was used to partially replace surimi protein at a substitution level of 30% (w/w) to prepare surimi/pea protein mixed gels (SPGs). Two spice treatment methods were compared: deodorized SPG prepared by adding spice water during gel preparation (DSPG-A) and deodorized SPG incubated in spice water during the second-stage heating (DSPG-I). The effects of these treatments on odor characteristics, volatile flavor composition, gel quality, and processing energy consumption were investigated. Sensory evaluation showed that DSPG-I was more effective in reducing fishy and beany odors and produced a braised flavor profile dominated by spicy aroma, suggesting its potential for flavor modification. Gas chromatography–ion mobility spectrometry (GC-IMS) further revealed that DSPG-I enriched characteristic spice-derived aroma compounds and showed increased intensities of roasted aroma-related compounds, including 2-furanmethanol acetate, and benzaldehyde. Quality analysis showed that no significant differences in gel strength or water-holding capacity were observed between the two spice-treated groups (DSPG-A and DSPG-I). Notably, DSPG-I significantly increased the surface a* and b* values of the mixed gels (p < 0.05), giving the products a characteristic color similar to that of braised products. A theoretical energy consumption estimation indicated that the comprehensive energy consumption for producing ready-to-eat surimi products using DSPG-I was 79.98 kgce/t, which was lower than that of the conventional process at 100.06 kgce/t, corresponding to theoretical energy-saving rate of approximately 20%. Overall, DSPG-I shows potential for application in the processing of ready-to-eat freshwater surimi products.

FoodsVol. 15(19)
Hefei University of Technology (CN), Huainan Normal University (CN)
Affordable and clean energy
Openalex Percentile: Top 15%
Meat and Animal Product Quality
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