食品科学 ›› 2026, Vol. 47 ›› Issue (13): 120-127.doi: 10.7506/spkx1002-6630-20251207-064

• 食品化学 • 上一篇    下一篇

醋酸酯淀粉-κ-卡拉胶-结冷胶复配优化及其对冷冻虾滑理化性质的影响

丁陈辉,任中阳,石林凡,黄琪琳,翁武银   

  1. (1.集美大学海洋食品与生物工程学院,福建 厦门 361021;2.华中农业大学食品科学技术学院,湖北 武汉 430070)
  • 出版日期:2026-07-15 发布日期:2026-07-17
  • 基金资助:
    福建省促进海洋与渔业产业高质量发展专项资金项目(FJHYF-L-2023-19)

Optimization of Acetate Starch-κ‑Carrageenan-Gellan Gum Blends and Their Effects onPhysicochemical Properties of Frozen Shrimp Paste

DING Chenhui, REN Zhongyang, SHI Linfan, HUANG Qilin, WENG Wuyin   

  1. (1. College of Ocean Food and Biological Engineering, Jimei University, Xiamen 361021, China; 2. College of Food Science and Technology, Huazhong Agricultural University, Wuhan 430070, China)
  • Online:2026-07-15 Published:2026-07-17

摘要: 以虾滑黏弹特性和虾滑制品凝胶破断力为评价指标,对醋酸酯淀粉、κ-卡拉胶和低酰基结冷胶进行复配优化,通过单因素试验与正交试验确定最佳配比,并考察该优化配方对虾滑流变学特性、热力学特性及虾滑制品凝胶强度、质构特性、水分分布和微观结构等的影响,并与未添加复配胶体的虾滑制品(对照组)及市售虾滑制备的虾滑制品(市售组)进行对比分析。结果表明,复配胶体的最优组合为8.00%(m/m)醋酸酯淀粉、3.00%(m/m)κ-卡拉胶和0.12%(m/m)结冷胶。流变学分析显示,实验组虾滑储能模量(G’)和损耗模量(G”)均高于对照组,而加热至95 ℃时的G’低于市售组。实验组凝胶破断力、硬度和咀嚼性均显著高于对照组和市售组,而破断距离和弹性则显著低于其他2 组(P<0.05)。色泽分析表明,实验组虾滑制品亮度值(62.51)介于对照组(57.94)和市售组(67.92)之间,红度值、黄度值最高。持水性和低场核磁共振结果显示,实验组与市售组虾滑制品在持水性和水分分布方面无显著差异(P>0.05),但两者均高于对照组。电泳分析显示,添加复配胶体未引起虾滑制品中蛋白质发生聚合或降解反应。扫描电子显微镜图像显示,添加复配胶体可提升虾滑制品凝胶网络结构的致密性。因此,优化复配醋酸酯淀粉、κ-卡拉胶和低酰基结冷胶可改善虾滑及其制品品质,为开发符合市场需求的高品质虾滑产品提供技术支持。

关键词: 虾滑;醋酸酯淀粉;κ-卡拉胶;结冷胶;凝胶特性;网络结构

Abstract: In this study, single factor experiments and orthogonal array design were used to optimize blends of acetylated starch, κ-carrageenan, and low-acyl gellan gum based on the viscosity of shrimp paste and the breaking force of heat-induced shrimp surimi gel. Subsequently, the effect of the optimized formulation on the rheological and thermodynamic properties of shrimp paste, as well as the gel strength, texture, moisture distribution, and microstructure of its heat-induced gel were investigated in comparison with samples with no added gum blends (control) and commercial shrimp surimi gel. The results showed that the optimal formulation consisted of 8.00% (m/m) acetylated starch, 3.00% (m/m) κ-carrageenan, and 0.12% (m/m) low-acyl gellan gum. Rheological analysis indicated that the storage modulus (G’) and loss modulus of the experimental group were higher than those of the control group, while the G’ value at 95 ℃ was lower than that of the commercial group. The experimental group exhibited higher gel breaking force, hardness, and chewiness but lower breaking distance and elasticity than both the control and commercial groups (P < 0.05). Color analysis revealed that the brightness value of the experimental group (62.51) was between those of the control group (57.94) and the commercial group (67.92), while the redness and yellowness values were the highest. No significant difference in water-holding capacity was found between the experimental and commercial groups, nor was there any difference in water distribution as indicated by low-field nuclear magnetic resonance results (P > 0.05), although both groups were superior to the control group. Electrophoresis analysis showed that the addition of the gum blend did not induce polymerization or degradation of proteins in shrimp paste products. Scanning electron microscopic images revealed that the gum blend enhanced the compactness of the network structure of shrimp paste products. Therefore, the optimized blend of acetylated starch, κ-carrageenan, and low-acyl gellan gum can improve the quality of shrimp paste and its products, providing technical support for developing high-quality shrimp paste products that meet market demands.

Key words: shrimp paste; acetylated starch; κ-carrageenan; gellan gum; gel properties; network structure

中图分类号: