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Thermal and viscoelastic properties of xanthan gum/chitosan complexes in aqueous solutions

机译:黄原胶/壳聚糖复合物在水溶液中的热和粘弹性

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The viscoelasticity and thermal properties of aqueous solutions of blended xanthan gum (XA) with chitosan were investigated in order to study the electrostatic interaction established between two polysaccharides. Storage modulus G', loss modulus G '' and zero shear rate viscosity eta(O) attain a maximum at a chitosan concentration C-max. The above results indicate that the junction between XA and chitosan is formed in a concentration range lower than C-max and the viscoelasticity of systems increases with increasing concentration. In a concentration range higher than C-max, junction formation may not occur effectively since the excess amount of chitosan completely screens anions of XA. The chain rigidity of XA decreases by the screening of the repulsive interaction between anions on XA chains. The ineffective junction formation and the decrease of XA chain rigidity may cause the decrease of viscoelasticity of systems with increasing concentration. The value of C-max decreases with increasing molecular mass of chitosan. From melting enthalpy of the above system measured by DSC, the amount of non-freezing water (W-nf) was evaluated. W-nf shows a minimum at the concentration C-max. This fact suggests that hydrophobic fields increased by junction structure formation through ion-complexation between XA and chitosan molecules.
机译:为了研究建立在两种多糖之间的静电相互作用,研究了黄原胶(XA)与壳聚糖共混物水溶液的粘弹性和热学性质。在壳聚糖浓度C-max下,储能模量G',损耗模量G''和零剪切速率粘度eta(O)达到最大值。以上结果表明,在低于C-max的浓度范围内形成XA与壳聚糖之间的连接,并且系统的粘弹性随浓度的增加而增加。在高于C-max的浓度范围内,由于过量的脱乙酰壳多糖会完全屏蔽XA阴离子,因此可能无法有效地形成连接。通过筛选XA链上阴离子之间的排斥相互作用,XA的链刚性降低。随着浓度的增加,无效的结形成和XA链刚性的降低可能导致体系的粘弹性降低。 C-max的值随壳聚糖分子量的增加而降低。从通过DSC测量的上述系统的熔融焓,评估非冷冻水的量(W-nf)。 W-nf在浓度C-max处显示最小值。这一事实表明,通过XA和壳聚糖分子之间的离子络合形成结结构,疏水区增加。

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