Lignin repolymerisation in spruce autohydrolysis pretreatment increases cellulase deactivation
Version
Published
Date Issued
2015
Author(s)
Pielhop, Thomas
Larrazábal, Gastón O.
Seidel, Christoph-M.
Rudolf von Rohr, Philipp
Type
Article
Language
English
Abstract
This study presents a modified autohydrolysis pretreatment which helps to overcome the recalcitrance of softwood for enzymatic hydrolysis of its cellulose. Autohydrolysis pretreatments of spruce wood were performed with 2-naphthol, which prevents lignin repolymerisation reactions, thereby increasing the enzymatic digestibility of cellulose by up to 64%. The negative influence of repolymerised lignin structures on enzymatic hydrolysis was confirmed by the addition of resorcinol in autohydrolysis, which is known to promote repolymerisation reactions and decreased the biomass digestibility. Several analyses were performed to study the underlying mechanism of this effect on hydrolysis, indicating that cellulolytic enzymes are adsorbed and deactivated especially by repolymerised lignin structures, which accounts for the high differences in biomass digestibility. It was shown that lignin repolymerisation significantly increases its specific surface area through modification of the lignin nanostructure, which is supposed to increase the unproductive binding of enzymes.
Subjects
S Agriculture (General)
TP Chemical technology
Publisher DOI
Journal or Serie
Green Chemistry
ISSN
1463-9262
Volume
17
Issue
6
Publisher
Royal Society of Chemistry
Submitter
Lutz, Simon
Citation apa
Pielhop, T., Larrazábal, G. O., Studer, M. H.-P., Brethauer Studer, S., Seidel, C.-M., & Rudolf von Rohr, P. (2015). Lignin repolymerisation in spruce autohydrolysis pretreatment increases cellulase deactivation. In Green Chemistry (Vol. 17, Issue 6, pp. 3521–3532). Royal Society of Chemistry. https://doi.org/10.24451/arbor.8355
File(s)![Thumbnail Image]()
Loading...
Name
c4gc02381a.pdf
License
Attribution 4.0 International
Version
published
Size
2.09 MB
Format
Adobe PDF
Checksum (MD5)
195b6aa77023359c348360fec4262f4d
