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水分对甘油增塑大豆蛋白玻璃化转变及微观结构的影响。

Effects of moisture on glass transition and microstructure of glycerol-plasticized soy protein.

作者信息

Chen Pu, Zhang Lina, Cao Feifei

机构信息

Department of Chemistry, Wuhan University, Wuhan 430072, China.

出版信息

Macromol Biosci. 2005 Sep 16;5(9):872-80. doi: 10.1002/mabi.200500072.

Abstract

The glass transition behavior of the glycerol-plasticized soy protein sheets (SL series) at various relative humidity (RH) was investigated by using differential scanning calorimetry with the aluminum pan and O-ring-sealed stainless steel capsule, and the microstructure of these sheets was detected on small-angle X-ray scattering. The results revealed that there were three glass transitions (Tg1, Tg2 and Tg3), corresponding to glycerol-rich, protein-rich and protein-water domains, in the protein-glycerol-water ternary system. The Tg1 values of the SL-series sheets at 75% RH decreased from -49.3 to -83.8 degrees C with an increase of glycerol content from 10 to 50 wt.-%, whereas Tg2 and Tg3 were almost invariable at about 60 degrees C and 3 degrees C, respectively. In addition, the Tg1, Tg2 and Tg3 values of the SL-25 containing 25 wt.-% glycerol at 0%, 35%, 58%, 75% and 98% RH were in the range of -12.7 - -83.2 degrees C, 65.8 - 53.1 degrees C and 3.5 - 1.9 degrees C, respectively. The result from small-angle X-ray scattering indicated that the radii of gyration (Rg) of protein-rich domain were in the range of 60-63 nm; this suggested the existence of protein macromolecules as aggregates in the stable protein-rich and protein-water domains. With an increase of RH, the tensile strength and Tg values of the SL-series sheets decreased, but the elongation at break increased. In view of the results above, the moisture in ambient environment significantly influenced the Tg values and microstructures of the glycerol-plasticized soy protein sheets, leading to the changes of the mechanical and thermal properties.

摘要

采用铝盘和O形环密封不锈钢胶囊的差示扫描量热法研究了不同相对湿度(RH)下甘油增塑大豆蛋白片材(SL系列)的玻璃化转变行为,并通过小角X射线散射检测了这些片材的微观结构。结果表明,在蛋白质-甘油-水三元体系中存在三个玻璃化转变温度(Tg1、Tg2和Tg3),分别对应富含甘油、富含蛋白质和蛋白质-水区域。在75%相对湿度下,SL系列片材的Tg1值随着甘油含量从10 wt.-%增加到50 wt.-%而从-49.3℃降至-83.8℃,而Tg2和Tg3分别在约60℃和3℃时几乎不变。此外,含有25 wt.-%甘油的SL-25在0%、35%、58%、75%和98%相对湿度下的Tg1、Tg2和Tg3值分别在-12.7至-83.2℃、65.8至53.1℃和3.5至1.9℃范围内。小角X射线散射结果表明,富含蛋白质区域的回转半径(Rg)在60-63nm范围内;这表明在稳定的富含蛋白质和蛋白质-水区域中存在蛋白质大分子聚集体。随着相对湿度的增加,SL系列片材的拉伸强度和Tg值降低,但断裂伸长率增加。鉴于上述结果,环境中的水分显著影响了甘油增塑大豆蛋白片材的Tg值和微观结构,导致其力学性能和热性能发生变化。

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