Viscosity of Melanoidins Formed by Oxidative Browning

H. Motai
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引用次数: 1

Abstract

To demonstrate the validity of an equation, E=k1 Mα1 (E:1%1cm E450, absorbance of 1 % solution in 1 cm path at 450 nm, M: molecular weight, k1, α1: constant), intrinsic viscosity of the color components of melanoidin from a glycine-, diglycine- or triglycine-xylose system and of the color components of shoyu, separated selectively by utilizing their change of elution position on DEAE-cellulose chromatography during oxidative browning, has been investigated in connection with their color intensity or molecular weight.The intrinsic viscosity increased with an increase of molecular weight of the color components from each of melanoidins. The Staudinger’s equation, [η]=k2Mα2, was observed to fit the relationship between the intrinsic viscosity([η]) and molecular weight of color component from each of melanoidins. On the other hand, an experimental equation, E=k3[η]α3 was obtained from a linear relationship between logarithmic intrinsic viscosity and logE of color components from each of melanoidins. The last ...
氧化褐变形成的类黑素的粘度
为了证明方程的有效性,E=k1 Mα1 (E:1%1cm E450, 1%溶液在1cm路径上在450nm处的吸光度,M:分子量,k1, α1:常数)、甘氨酸-、二甘氨酸-或甘油三酯-木糖体系中的类黑素的颜色成分的固有粘度,以及在氧化褐变过程中利用deae -纤维素色谱上洗脱位置的变化选择性分离的shoyu的颜色成分,已经研究了它们的颜色强度或分子量的关系。特性粘度随各类黑素颜色组分分子量的增加而增加。用Staudinger方程[η]=k2Mα2拟合了各类黑素颜色组分的特性粘度([η])与分子量之间的关系。另一方面,由各类黑素颜色组分的对数特性粘度与logE之间的线性关系,得到了E=k3[η]α3的实验方程。最后一个……
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