Solvation behavior of cellulose and xylan in the MIM/EMIMAc ionic liquid solvent system – parameters for small scale solvation
Journal article, 2014

Ionic liquid treatment has been reported by several researchers as a possible step in the process of fractionating lignocellulosic biomass within the biorefinery concept. However, understanding how solvation can be achieved and how the feedstock biopolymers are affected is needed prior to a viable implementation. An effective two component solvent system for the wood components cellulose and xylan has been developed. Furthermore, the solvation of these components in the system consisting of the ionic liquid (IL) 1-ethyl-3-methylimidazolium acetate (EMIMAc) in a novel combination with the co-solvent 1-methylimidazole (MIM) is investigated. Focused beam reflectance measurement (FBRM) particle characterization in combination with microscopic analysis and molecular weight determinations (xylan) shows that cellulose and xylan can be most efficiently solvated using only 3 to 4% IL (n/n anhydro-glucose units and n/n anhydro-xylose units) and 9% IL, respectively, while still avoiding any significant polymer degradation. A model for a two-step process of cellulose solvation in the present system is proposed.

xylan

ionic liquid

cellulose

solvation

FBRM

Author

Susanne Bylin

Chalmers, Chemical and Biological Engineering, Forest Products and Chemical Engineering

Carina Olsson

Chalmers, Chemical and Biological Engineering, Organic Chemistry

Gunnar Westman

Chalmers, Chemical and Biological Engineering, Organic Chemistry

Wallenberg Wood Science Center (WWSC)

Hans Theliander

Chalmers, Chemical and Biological Engineering, Forest Products and Chemical Engineering

Wallenberg Wood Science Center (WWSC)

BioResources

1930-2126 (ISSN) 19302126 (eISSN)

Vol. 9 1 1038-1054

Subject Categories

Polymer Chemistry

Paper, Pulp and Fiber Technology

Organic Chemistry

Driving Forces

Sustainable development

Areas of Advance

Materials Science

More information

Latest update

11/5/2018