On the determination of charge and nitrogen content in cellulose fibres modified to contain quaternary amine functionality
Journal article, 2025

Research interest in quaternization of cellulose fibres has increased considerably over the past decades. However, there is little or no consensus regarding how to characterize the material in terms of degree of substitution (DS), and the literature suggests a range of different methods focusing on charge determination as well as nitrogen content quantification. This work aims to fill the knowledge gap regarding how the different methods perform in relation to each other, and for what cellulosic systems each method has advantages, disadvantages and even potential pitfalls. FT-IR and NMR measurements are used to establish successful modification and determine the relative number of substituent groups. Another six methods are compared for the determination of the DS of cellulosic fibres and nanofibrils. The methods include Kjeldahl measurements, nitrogen determination by chemiluminescence, determination of molecular nitrogen by the Dumas method, colloidal titration, conductometric titration and polyelectrolyte adsorption. It can be concluded that most techniques investigated are reliable within certain ranges of DS and/or when using appropriate post-treatment of the quaternized material and suitable sample preparation techniques. The results from the present work hence provide recommendations to make an educated choice of method, and experimental protocol, based on the technique at hand.

Degree of substitution

Quaternization

Charge determination

Nitrogen quantification

Cellulose Fibres

Author

Johanna Sjölund

Royal Institute of Technology (KTH)

Gunnar Westman

Chalmers, Chemistry and Chemical Engineering, Chemistry and Biochemistry

L. Wagberg

Royal Institute of Technology (KTH)

Per A. Larsson

Royal Institute of Technology (KTH)

Carbohydrate Polymers

0144-8617 (ISSN)

Vol. 347 122734

Design for Circularity: Lignocellulose based Thermoplastics - Fib:Re

VINNOVA (2019-00047), 2020-01-01 -- 2024-12-31.

Subject Categories

Chemical Sciences

DOI

10.1016/j.carbpol.2024.122734

More information

Latest update

10/7/2024