Xu Xiaojuan, Chen Pan, Zhang Lina
Department of Chemistry, Wuhan University, Wuhan, China.
Biorheology. 2007;44(5-6):387-401.
The viscoelastic properties of Aeromonas (A) gum in water were investigated by using the Rheometric Scientific ARES controlled strain rheometer. An intrinsic viscosity of 8336 ml/g was obtained according to the Fuoss-Straus equation. The effect of salt concentration on intrinsic viscosity revealed that the A gum exists as semiflexible chain. Typical shear-thinning (pseudoplastic) behavior was observed at concentrations higher than 0.52%. The zero shear viscosity (eta(0)) increased with increasing polysaccharide concentration (c) showing a gradient of approximately 1.0, 2.9 and 4.8 in different concentration domains. The critical concentrations c* and c**, at which the transitions from a dilute solution of independently moving chains to semidilute and then concentrated domains occurred, were determined roughly to be 1.2% and 3.5%. The results from dynamic experiments revealed that the A gum solution shows characteristics of polymer solutions without any evidence of gel-like character. All the results from steady and dynamic tests suggest that the A gum is a non-gelling polysaccharide. The temperature dependence of apparent viscosity was described by Arrhenius equation and the flow activation energy was estimated to be 45.2 kJ/mol, which is independent on polymer concentration.
利用流变科学公司的ARES控制应变流变仪研究了气单胞菌(A)胶在水中的粘弹性特性。根据福斯-施特劳斯方程得到特性粘度为8336毫升/克。盐浓度对特性粘度的影响表明,A胶以半柔性链的形式存在。在浓度高于0.52%时观察到典型的剪切变稀(假塑性)行为。零剪切粘度(η(0))随着多糖浓度(c)的增加而增加,在不同浓度域中显示出约为1.0、2.9和4.8的梯度。从独立移动链的稀溶液转变为半稀溶液然后再到浓溶液域的临界浓度c*和c**大致确定为1.2%和3.5%。动态实验结果表明,A胶溶液表现出聚合物溶液的特性,没有任何凝胶状特征的迹象。稳态和动态测试的所有结果表明,A胶是一种非凝胶多糖。用阿伦尼乌斯方程描述了表观粘度的温度依赖性,流动活化能估计为45.2千焦/摩尔,这与聚合物浓度无关。