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由纤维素纳米纤维有机凝胶衍生的蒸发干燥粉末,可完全恢复水分散液固有的高粘度和高透明度。

Evaporative Dry Powders Derived from Cellulose Nanofiber Organogels to Fully Recover Inherent High Viscosity and High Transparency of Water Dispersion.

机构信息

SANKEN (The Institute of Scientific and Industrial Research), Osaka University, 8-1 Mihogaoka, Ibaraki, Osaka, 567-0047, Japan.

Institute of Engineering Innovation, The University of Tokyo, 2-11-16 Yayoi, Bunkyo, Tokyo, 113-8656, Japan.

出版信息

Macromol Rapid Commun. 2023 Sep;44(17):e2300186. doi: 10.1002/marc.202300186. Epub 2023 Jun 8.

Abstract

Water containing low amounts of cellulose nanofiber (CNF) is widely used as a thickening agent owing to its three unique properties: high transparency, viscosity, and controllable viscosity based on the shear rate. CNF dry powders are used to reduce the transportation and storage costs or expand applications as a thickening agent. Herein, the preparation of CNF dry powders that can be used to obtain redispersions while maintaining the aforementioned properties is reported. In this regard, the dehydration and vaporization procedures for a CNF water dispersion without using additives are discussed. When dry powders are prepared by removing water by boiling, their redispersions do not exhibit all their unique properties because of dense aggregations. However, when their redispersions are vigorously stirred to break the dense aggregations, they become transparent, although they do not recover their initial viscosity. Freeze-dried powders recover all their initial properties after redispersion. Nevertheless, their large volume does not reduce the transportation and storage costs. When the liquid is evaporated from the solvent-exchanged CNF organogels, their redispersions also fully recover all their properties. Furthermore, the evaporative dry powders with dense small volumes and good handling contribute to reducing the transportation and storage costs.

摘要

含有低浓度纤维素纳米纤维(CNF)的水因其三个独特的性质而被广泛用作增稠剂:高透明度、高粘度和基于剪切率的可控粘度。CNF 干粉可用于降低运输和储存成本或扩大增稠剂的应用。在此,报告了一种 CNF 干粉的制备方法,该干粉可在保持上述特性的同时获得再分散体。在这方面,讨论了在不使用添加剂的情况下对 CNF 水分散体进行脱水和蒸发的过程。当通过煮沸去除水来制备干粉时,由于密集的聚集,其再分散体不会表现出所有独特的性质。然而,当剧烈搅拌其再分散体以打破密集的聚集时,它们会变得透明,尽管它们不会恢复初始粘度。冻干粉末在再分散后恢复所有初始特性。然而,它们的大体积并没有降低运输和储存成本。当溶剂交换的 CNF 有机凝胶中的液体蒸发时,其再分散体也完全恢复了所有的特性。此外,具有密集小体积和良好处理性能的蒸发干燥粉末有助于降低运输和储存成本。

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