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颗粒大小和添加量对紫甘薯面团流变学特性及水分流动性的影响

Influences of Particle Size and Addition Level on the Rheological Properties and Water Mobility of Purple Sweet Potato Dough.

作者信息

Hu Han, Zhou Xiangyu, Zhang Yuxin, Zhou Wenhua, Zhang Lin

机构信息

Hunan Key Laboratory of Processed Food for Special Medical Purpose, National Engineering Research Center of Rice and Byproduct Deep Processing, School of Food Science and Technology, Central South University of Forestry & Technology, Changsha 410004, China.

Division of Medicine, Faculty of Medical Science, University College London, London WC1E 6BT, UK.

出版信息

Foods. 2023 Jan 13;12(2):398. doi: 10.3390/foods12020398.

Abstract

This paper investigated the effects of different particle sizes and addition levels of purple sweet potato flour (PSPF) on the rheological properties and moisture states of wheat dough. There was deterioration in the pasting and mixing properties of the dough, due to the addition of PSPF (020% substitution), which was reduced by decreasing the particle size of the PSPF (26059 μm). Dynamic rheology results showed that PSPF enhanced the elasticity of the dough, providing it solid-like processability. PSPF promoted the binding of gluten proteins and starch in the dough, resulting in a denser microstructure. Differential scanning calorimetry and low-field nuclear magnetic resonance showed that PSPF converted immobilized water and freezable water to bound water and non-freezable water in the dough, making the dough more stable, and that the reduction in PSPF particle size facilitated these processes. Our results provide evidence for the great application potential of purple sweet potatoes for use in flour-based products.

摘要

本文研究了不同粒径和添加量的紫薯粉(PSPF)对小麦面团流变学特性和水分状态的影响。由于添加了PSPF(替代率020%),面团的糊化和搅拌特性变差,但通过减小PSPF的粒径(26059μm)可使其降低。动态流变学结果表明,PSPF增强了面团的弹性,使其具有类似固体的加工性能。PSPF促进了面团中面筋蛋白和淀粉的结合,导致微观结构更致密。差示扫描量热法和低场核磁共振表明,PSPF将面团中的束缚水和可冻结水转化为结合水和不可冻结水,使面团更稳定,且PSPF粒径的减小促进了这些过程。我们的结果为紫薯在面粉基产品中的巨大应用潜力提供了证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27fa/9858315/cf2a97ffc150/foods-12-00398-g001.jpg

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