食品科学 ›› 2025, Vol. 46 ›› Issue (18): 231-212.doi: 10.7506/spkx1002-6630-20250320-160

• 食品工程 • 上一篇    下一篇

螺杆构型对挤压玉米粉理化特性及冲调品质的影响

邢佳悦,陈佳龙,尹绂聿,赵湘媛,江浩旭,刘景圣,许秀颖,吴玉柱   

  1. (1.吉林农业大学食品科学与工程学院,小麦和玉米深加工国家工程研究中心,吉林?长春 130118;2.吉林省福玉农业科技有限公司,吉林?延边 133600)
  • 出版日期:2025-09-25 发布日期:2025-08-19
  • 基金资助:
    吉林省科技厅重点研发项目(20230202063NC);校企横向科研项目(202020071)

Effects of Different Screw Configurations on Physicochemical Properties and Reconstitutability of Extruded Corn Flour

Xing Jiayue, Chen Jialong, YIN Fuyu, Zhao Xiangyuan, Jiang Haoxu, Liu Jingsheng, Xu Xiuying, Wu Yuzhu   

  1. (1. National Engineering Research Center of Wheat and Corn Further Processing, School of Food Science and Engineering, Jilin Agricultural University, Changchun 130118, China; 2. Jilin Fuyu Agricultural Science and Technology Co., Ltd., Yanbian 133600, China)
  • Online:2025-09-25 Published:2025-08-19

摘要: 为探究螺杆构型对挤压玉米粉理化特性及冲调品质的影响,本研究通过更改捏合元件组数量、捏合元件与模头距离(件-模距离)、捏合元件间距(元件间距),设置不同的螺杆构型,以比机械能反映螺杆的剪切作用强度,测定玉米粉的糊化特性、水合特性、质构特性和微观结构,分析玉米粉的冲调品质。结果表明:不同的螺杆构型能够引起比机械能的变化,与未挤压的玉米粉相比,随着捏合元件数量的增加、件-模距离或元件间距减小,玉米粉的比机械能升高,其中淀粉与水分子形成的凝胶孔洞密集;当使用两组捏合元件且元件间距为5 L/D(G6)时,玉米粉的糊化峰值黏度和凝胶硬度分别下降了57%和64.94%,淀粉的相对结晶度下降了62.76%,吸水性指数和水溶性指数均分别提高了0.83 倍和1.10 倍,挤压玉米粉的冲调结块率下降了77.91%,显著提高了玉米粉的冲调稳定性。相关性分析表明,挤压玉米粉比机械能与直链淀粉含量、稳定性系数、吸水性指数和水溶性指数呈显著正相关,与相对结晶度、结块率和离心沉淀率呈显著负相关;相对结晶度与吸水性指数、水溶性指数、稳定性系数呈显著负相关、与结块率和离心沉淀率呈极显著正相关。综上,增加捏合元件组数量、减小元件间距能有效改善挤压玉米粉的理化特性和冲调品质,研究结果可为玉米营养冲调粉的加工过程中螺杆构型的选择和冲调品质提升提供理论依据。

关键词: 螺杆构型;挤压;玉米粉;理化特性;冲调品质

Abstract: To investigate the effects of different screw configurations on the physicochemical properties and reconstitutability of extruded corn flour, this study set up different screw configurations by varying the number of kneading element groups, the distance between the kneading elements and the die head (kneading-die distance), and the kneading element spacing. The specific mechanical energy was taken to reflect the shear strength of the screw. The paste, hydration, textural properties and microstructure of extruded corn flour were measured as well as its reconstitutability. The results showed that different screw configurations caused changes in specific mechanical energy; compared with that of non-extruded corn flour (NCF), the specific mechanical energy of extruded corn flour was elevated with increasing number of kneading elements and with decreasing kneading-die distance or kneading element spacing, and the starch and water molecules in extruded corn flour formed a highly porous gel structure. When two sets of kneading elements were used and the kneading element spacing was 5 L/D (G6), the peak pasting viscosity and gel hardness of corn flour decreased by 57% and 64.94%, respectively. The relative crystallinity of starch decreased by 62.76%, the water absorption index and water solubility index increased by 1.83 and 2.10 folds, respectively and the agglomeration rate of extruded corn flour decreased by 77.91%, indicating significantly improved reconstitution stability. Correlation analysis showed that the specific mechanical energy of extruded corn flour was significantly and positively correlated with the content of amylose, stability coefficient, water absorption index and water solubility index, but significantly and negatively correlated with the relative crystallinity, agglomeration rate and centrifugal sedimentation rate. The relative crystallinity was significantly and negatively correlated with the water absorption index, water solubility index and stability coefficient, but significantly and positively correlated with the agglomeration rate and centrifugal sedimentation rate. In conclusion, increasing the number of kneading elements and decreasing the element spacing can effectively enhance the physicochemical properties and reconstitutability of extruded corn flour, providing a theoretical basis for the selection of screw configuration for improved reconstitutability of extruded corn flour.

Key words: screw configuration; extrusion; corn flour; physicochemical properties; reconstitutability

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