Albornoz-Palma Gregory, Ching Daniel, Andrade Andrea, Henríquez-Gallegos Sergio, Teixeira Mendonça Regis, Pereira Miguel
Departamento de Ingeniería Química, Universidad de Concepción, Concepción 4030000, Chile.
Facultad de Ciencias Forestales, Universidad de Concepción, Concepción 4030000, Chile.
Polymers (Basel). 2022 Sep 14;14(18):3843. doi: 10.3390/polym14183843.
Rheological parameters of cellulose nanofibril dispersions (CNF) are relevant and commonly used as quality control for producing of this type of material. These parameters are affected by morphological features and size distribution of the nanofibrils. Understanding the effect of size distribution is essential for analyzing the rheological properties, viscosity control, performance of CNFs, and potential dispersion applications. This study aims at comprehending how the morphological characteristics of the CNFs and their size distribution affect the rheological behavior of dispersions. The CNF dispersions were fractionated by size, obtaining six fractions of each, which were analyzed for their morphology and rheology (viscosity, intrinsic viscosity). In the dilute region, the viscosity and intrinsic viscosity behavior of CNF dispersions are linear concerning the size distribution present in the dispersion. In the semi-dilute region, the size of the fibrils and the fiber aggregates have a relevant effect on the viscosity behavior of CNF dispersions, which are satisfactorily related (R = 0.997) using the rule of logarithmic additivity of the dispersion viscosities of size fractions.
纤维素纳米纤丝分散体(CNF)的流变学参数具有相关性,并且通常用作生产此类材料的质量控制指标。这些参数受纳米纤丝的形态特征和尺寸分布影响。了解尺寸分布的影响对于分析流变学性质、粘度控制、CNF的性能以及潜在的分散应用至关重要。本研究旨在理解CNF的形态特征及其尺寸分布如何影响分散体的流变行为。通过尺寸对CNF分散体进行分级,每种分散体获得六个级分,并对其形态和流变学(粘度、特性粘度)进行分析。在稀溶液区域,CNF分散体的粘度和特性粘度行为与分散体中存在的尺寸分布呈线性关系。在半稀溶液区域,纤丝和纤维聚集体的尺寸对CNF分散体的粘度行为有显著影响,使用尺寸级分分散粘度的对数加和规则,二者具有良好的相关性(R = 0.997)。