凝乳酶
流变学
分离
酪蛋白
粘弹性
凝乳酶
化学
动态力学分析
粒径
粒子(生态学)
材料科学
化学工程
聚合物
复合材料
有机化学
物理化学
工程类
地质学
海洋学
作者
M. Mellema,P. Walstra,J.H.J. van Opheusden,T. van Vliet
标识
DOI:10.1016/s0001-8686(01)00089-6
摘要
During ageing of casein or skim milk gels, structural changes take place that affect gel parameters, such as pore size and storage modulus. These changes can be explained in terms of rearrangements of the gel network at various length scales. In this paper, rheological experiments on rennet-induced casein gels and a general model on rearrangements are presented. The results of experiments (e.g. microscopy, permeametry) and computer simulations, the model, and recent literature on casein gels and other types of particle gels are compared to each other. Experiments presented include measurements of storage and loss moduli and maximum linear strain of the casein gels. Parameters varied were pH (5.3 and 6.65) and temperature (25 and 30 degrees C). In addition, the casein volume fraction (5-9 vol.%) was varied, which enables application of fractal scaling models. For rennet-induced casein gels, it is demonstrated that at the lower pH, all types of rearrangements proceed significantly faster. The rearrangements include: an increase in the size of compact building blocks; partial disappearance of fractal structure; and the formation of straightened strands, some of which eventually break. All of these rearrangements seem to be a consequence of particle fusion. There are indications of universality of the relation between particle fusion and gel syneresis for gels composed of viscoelastic particles.
科研通智能强力驱动
Strongly Powered by AbleSci AI