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首页> 外文期刊>Cellulose >Morphology and rheology of cellulose nanofibrils derived from mixtures of pulp fibres and papermaking fines
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Morphology and rheology of cellulose nanofibrils derived from mixtures of pulp fibres and papermaking fines

机译:纸浆纤维和造纸细粉混合物衍生的纤维素纳米原纤维的形态和流变学

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摘要

The rheological behaviour of homogenised fibres originally having different lengths was evaluated. For this purpose, mixtures of pulp fibres and fines were fibrillated mechanically without pre-treatment and characterised with regard to morphology and viscosity. It was found that, for all samples, a similar number of homogenisation passes was needed to reach a viscosity plateau. However, the value of the final viscosity differed significantly: homogenised suspensions derived from fines achieved only about 60 % of the viscosity of suspensions derived from pulp. Already after a few homogenisation cycles, no differences between the samples could be measured using optical devices, indicating that fibrillation on the nanometre scale was responsible for the distinct rheological behaviours. Atomic force microscopy measurements indicated significantly reduced fibril lengths for the suspensions derived from fines, which explains their reduced viscosity.
机译:评价了原本具有不同长度的均质纤维的流变行为。为此目的,无需预处理就将纸浆纤维和细粉的混合物机械原纤化,并就形态和粘度进行表征。已经发现,对于所有样品,需要相似数量的均质通过以达到粘度平稳期。但是,最终粘度的值差别很大:由细粉得到的均质悬浮液仅达到由纸浆得到的悬浮液粘度的约60%。经过几次均质化循环后,使用光学设备无法测量样品之间的差异,这表明纳米级的原纤化是造成流变行为不同的原因。原子力显微镜测量表明,源自细粉的悬浮液的原纤维长度显着减少,这说明它们的粘度降低。

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