Unidad de Tecnología Alimentaria, Centro de Investigación y Asistencia en Tecnología y Diseño del Estado de Jalisco, A.C. Av. Normalistas #800, Guadalajara, Jalisco 44270, México.
Carbohydr Polym. 2013 Jun 5;95(1):161-6. doi: 10.1016/j.carbpol.2013.02.053. Epub 2013 Mar 5.
The formation of the complex coacervate (CC) phases between gum Arabic (GA) and low molecular weight chitosan (Ch) and the interrelationship between the zeta-potential and viscoelastic properties of the coacervate phase were investigated. The maximum charge difference of biopolymers stock dispersion was displayed in a range of pH between 4.0 and 5.5. Titration experiment between the oppositely charged biopolymers showed that the isoelectric point was found at a biopolymers mass ratio (R[GA:Ch]) of R[5.5:1]. Turbidity, size and ζ-potential of the soluble complexes (SC) showed an interrelation with the complex coacervate yield (CCY). Higher CCY values (82.2-88.1%) were obtained in the range from R[3:1] to R[5.5:1]. Change the R[GA:Ch] in dispersion, make possible to produce CC's phases exhibiting cationic (R[1:1] and R[3:1]), neutral (R[5.5:1]) or anionic (R[9:1] and R[7:1]) charged. All CC's exhibited liquid-viscoelastic behavior at lower frequencies and a crossover between G″ and G' at higher frequencies.
研究了阿拉伯胶(GA)和低分子量壳聚糖(Ch)之间形成的复合凝聚相(CC)以及凝聚相的动电势和粘弹性质之间的关系。生物聚合物原液分散体的最大电荷差显示在 pH 值为 4.0 到 5.5 之间的范围内。带相反电荷的生物聚合物之间的滴定实验表明,等电点出现在生物聚合物质量比(R[GA:Ch])为 R[5.5:1]处。可溶性复合物(SC)的浊度、粒径和 ζ-电位与复合凝聚产率(CCY)显示出相关性。在 R[3:1]到 R[5.5:1]的范围内,获得了较高的 CCY 值(82.2-88.1%)。在分散体中改变 R[GA:Ch],可以生产出表现出阳离子(R[1:1]和 R[3:1])、中性(R[5.5:1])或阴离子(R[9:1]和 R[7:1])带电的 CC。所有 CC 都表现出较低频率下的液体粘弹性行为,以及较高频率下 G″和 G'之间的交叉。