Ako Komla
UGA, LRP, F-38000 Grenoble, France; CNRS, LRP, F-38000 Grenoble, France.
Int J Biol Macromol. 2017 Aug;101:660-667. doi: 10.1016/j.ijbiomac.2017.03.145. Epub 2017 Mar 28.
Water-release from kappa-Carrageenan (kC) hydrogels (syneresis) has been studied by two experimental methods (1) one in which the exudate is enabled to surround the gel and (2) one in which the exudate is continuously removed from the gel surfaces. The pressures P caused by the gel weight decrease from 1Pa for method (1) and 500Pa for method (2). The syneresis of the gels at 2g/L kC with 40mM KCl has been observed to decrease with P for the highest pressures. However, for the lowest pressures, the pressure-dependence of the syneresis has not been found, although this gel shrank remarkably. This gel exhibits yielding at approximately 0.15Pa during rheological testing and exhibits creep at stress well below its yield stress. The result is consistent in demonstrating that similar gels in the conditions of method (1) or (2) yield while releasing fluid. The release kinetics have been fitted with a sum of two exponential decay functions, one for shrinkage and the other for yielding. The kinetic rate, k for shrinkage, is almost 0.035±0.005h for all of the gels studied, except for very soft and stiff gels; for that of yielding, k increases in the range of 0.07-0.33±0.01h when the gel is modulated from soft to stiff.
已通过两种实验方法研究了κ-卡拉胶(kC)水凝胶的析水现象(脱水收缩):(1)一种方法是使渗出液环绕凝胶;(2)另一种方法是持续从凝胶表面去除渗出液。方法(1)中凝胶重量导致的压力P为1Pa,方法(2)中为500Pa。已观察到,在最高压力下,对于含40mM KCl的2g/L kC凝胶,其析水现象随压力P降低。然而,对于最低压力,尽管该凝胶显著收缩,但未发现析水现象与压力的相关性。在流变学测试期间,这种凝胶在约0.15Pa时出现屈服,并在远低于其屈服应力的应力下出现蠕变。结果一致表明,在方法(1)或(2)的条件下,类似的凝胶在释放流体时会屈服。释放动力学已通过两个指数衰减函数的总和进行拟合,一个用于收缩,另一个用于屈服。除了非常软和硬的凝胶外,所有研究的凝胶收缩的动力学速率k几乎为0.035±0.005h⁻¹;对于屈服的动力学速率,当凝胶从软态调制到硬态时,k在0.07 - 0.33±0.01h⁻¹范围内增加。