Structure of Aqueous Solutions of Microcrystalline Cellulose/Sodium Hydroxide below 0 °C and the Limit of Cellulose Dissolution
- 16 June 2007
- journal article
- Published by American Chemical Society (ACS) in Biomacromolecules
- Vol. 8 (7), 2282-2287
- https://doi.org/10.1021/bm0702399
Abstract
The aim of the paper is to investigate the structure of solutions of microcrystalline cellulose in NaOH/water mixtures and to determine the limit of cellulose solubility. The binary NaOH/water and the ternary cellulose/NaOH/water phase diagrams in the area of cellulose dissolution (7-10% NaOH below 0 degrees C) are studied by DSC. The NaOH/water binary phase diagram has a simple eutectic behavior. Because of the existence of this eutectic structure, it is possible to measure the influence of the addition of pure low molar mass microcrystalline cellulose. This shows that a minimum of four NaOH molecules should be linked to one anhydroglucose unit to allow for the dissolution of microcrystalline cellulose. The proportions between bound Avicel, NaOH, and water molecules as a function of cellulose concentrations are calculated. A tentative explanation about the origin of the dissolving power of NaOH/water is given.Keywords
This publication has 8 references indexed in Scilit:
- Investigation of solubility of microcrystalline cellulose in aqueous NaOHPolymers for Advanced Technologies, 2005
- Rheological Properties and Gelation of Aqueous Cellulose−NaOH SolutionsBiomacromolecules, 2003
- Structure of Cellulose−Soda Solutions at Low TemperaturesBiomacromolecules, 2001
- Solubility of bacterial cellulose and its structural propertiesJournal of Applied Polymer Science, 1998
- Dissolution of Cellulose in Aqueous NaOH SolutionsCellulose, 1998
- Some Characteristic Features of Dilute Aqueous Alkali Solutions of Specific Alkali Concentration (2.5 mol l−1) Which Possess Maximum Solubility Power against CellulosePolymer Journal, 1988
- Das System Cellulose–Natriumhydroxyd–Wasser in Abhängigkeit von der TemperaturZeitschrift für Physikalische Chemie, 1939
- LXI.—The hydrates of sodium, potassium, and lithium hydroxidesJournal of the Chemical Society, Transactions, 1893