Effects of salts on the freeze–thaw stability, gel strength and rheological properties of potato starch

被引:0
作者
Wei Wang
Hongxian Zhou
Hong Yang
Min Cui
机构
[1] Huazhong Agricultural University,College of Food Science and Technology
[2] Collaborative Innovation Center for Efficient and Health Production of Fisheries in Hunan,Key Laboratory of Environment Correlative Dietology
[3] Huazhong Agricultural University,Laboratory of Animal Virology, College of Veterinary Medicine
[4] Ministry of Education,undefined
[5] National R&D Branch Center for Conventional Freshwater Fish Processing (Wuhan),undefined
[6] Aquatic Product Engineering and Technology Research Center of Hubei Province,undefined
[7] Huazhong Agricultural University,undefined
来源
Journal of Food Science and Technology | 2016年 / 53卷
关键词
Potato starch; Salts; Hofmeister series; Retrogradation; Rheology;
D O I
暂无
中图分类号
学科分类号
摘要
The objective of this study was to evaluate the effects of different salts (NaF, NaCl, NaBr, NaI, K2SO4, KCl, KNO3, KSCN, LiCl) on freeze–thaw stability, gel strength and rheological properties of potato starch. Addition of the structure-making (salting-out) ions, such as F− and SO42−, decreased freeze–thaw stability and increased gel strength, maximal storage modulus (G′) and maximal loss modulus (G″) of potato starch, due to a stronger three-dimensional network by promoting the starch retrogradation and inhibiting starch gelatinization. Shear stress versus shear rate of all samples at 25 °C was well fitted to the simple power-law model with high determination coefficients (R2 = 0.9863–0.9990). Flow behavior index (n), consistency index (K) and apparent viscosities increased with adding salting-out ions. However, the structure-breaking (salting-in) ions had reverse effects on freeze–thaw stability, gel strength and rheological characteristics of potato starch. The addition of structure-breaking ions, such as Br−, NO3−, I−, SCN−, Na+ and Li+, decreased gel strength, G′ and G″ values and increased freeze–thaw stability. Salts could significantly influence on the retrogradation of potato starch, generally following the ion order: F− > SO42− > Cl− > Br− > NO3− > I− > SCN− for anions and K+ > Na+ > Li+ for cations, consistent with the Hofmeister series.
引用
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页码:3624 / 3631
页数:7
相关论文
共 119 条
[31]  
Singh J(2010)Dual-wavelength colorimetric method for measuring amylose and amylopectin contents of potato starch J Cereal Sci 156 137-143
[32]  
McCarthy OJ(2014)Effect of the addition of fatty acids on rice starch properties Food Chem 112 919-923
[33]  
Singh H(2009)Retrogradation of waxy and normal corn starch gels by temperature cycling Food Chem undefined undefined-undefined
[34]  
Krystyjan M(undefined)Effects of salts on physicochemical, microstructural and thermal properties of potato starch undefined undefined undefined-undefined
[35]  
Sikora M(undefined)Effect of phytochemical extracts on the pasting, thermal, and gelling properties of wheat starch undefined undefined undefined-undefined
[36]  
Adamczyk G(undefined)undefined undefined undefined undefined-undefined
[37]  
Tomasik P(undefined)undefined undefined undefined undefined-undefined
[38]  
Leberman R(undefined)undefined undefined undefined undefined-undefined
[39]  
Lee CM(undefined)undefined undefined undefined undefined-undefined
[40]  
Chung KH(undefined)undefined undefined undefined undefined-undefined