Preparation of Absorbent Foam Based on Softwood Kraft Pulp: Advancing from Gram to Kilogram Scale
Journal article, 2013

Absorbent foams were produced at both the gram scale and the kilogram scale by treating bleached softwood kraft pulp fibers to TEMPO oxidation, followed by washing, fiber disintegration, and freeze drying. Two reaction temperatures and three different dosages of primary oxidant were evaluated to find suitable oxidation conditions. It was found that the absorption and retention capacities were 50 to 70% lower for kilogram-scale foams than for gram-scale foams. SEM studies showed that the kilogram-scale foams had larger pores than the gram-scale foams; this explains the major differences in absorption and retention. The oxidation treatments performed in both scales resulted in a major increase in the amount of carboxylate groups and a major decrease in DPV, but only minor differences in these factors were found in a comparison between pulps from gram-and kilogram-scale experiments. However, the kilogram-scale dispersing equipment appeared to cause more fiber cutting, while the equipment used in the gram-scale experiments promoted the liberation of microfibrils to a greater extent. Furthermore, in both the gram- and kilogram-scale samples, a high dosage of primary oxidant and a low oxidation temperature were found to maximize the retention of liquid.

Laboratory scale

Free swelling capacity

Scale-up

Absorbent foam

Morphology

Centrifuge retention capacity

Microfibrillated cellulose

TEMPO oxidation

Author

Fredrik Wernersson Brodin

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

Yogesh Sonavane

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

Hans Theliander

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

Wallenberg Wood Science Center (WWSC)

BioResources

1930-2126 (ISSN) 19302126 (eISSN)

Vol. 8 2 2099-2117

Subject Categories

Paper, Pulp and Fiber Technology

DOI

10.15376/biores.8.2.2099-2117

More information

Latest update

3/2/2022 6