» Articles » PMID: 19820908

The Effect of Varying Organosolv Pretreatment Chemicals on the Physicochemical Properties and Cellulolytic Hydrolysis of Mountain Pine Beetle-killed Lodgepole Pine

Overview
Date 2009 Oct 13
PMID 19820908
Citations 10
Authors
Affiliations
Soon will be listed here.
Abstract

Mountain pine beetle-killed lodgepole pine (Pinus contorta) chips were pretreated using the organosolv process, and their ease of subsequent enzymatic hydrolysis was assessed. The effect of varying pretreatment chemicals and solvents on the substrate's physicochemical characteristics was also investigated. The chemicals employed were MgCl2, H2SO4, SO2, and NaOH, and the solvents were ethanol and butanol. It was apparent that the different pretreatments resulted in variations in both the chemical composition of the solid and liquid fractions as well in the extent of cellulolytic hydrolysis (ranging from 21% to 82% hydrolysis after 12 h). Pretreatment under acidic conditions resulted in substrates that were readily hydrolyzed despite the apparent contradiction that pretreatment under alkaline conditions resulted in increased delignification (approximately 7% and 10% residual lignin for alkaline conditions versus 17% to 19% for acidic conditions). Acidic pretreatments also resulted in lower cellulose degree of polymerization, shorter fiber lengths, and increased substrate porosity. The substrates generated when butanol/water mixtures were used as the pretreatment solvent were also hydrolyzed more readily than those generated with ethanol/water. This was likely due to the limited miscibility of the solvents resulting in an increased concentration of pretreatment chemicals in the aqueous layer and thus a higher pretreatment severity.

Citing Articles

The Covalent Linking of Organophosphorus Heterocycles to Date Palm Wood-Derived Lignin: Hunting for New Materials with Flame-Retardant Potential.

Davidson D, McKay A, Cordes D, Woollins J, Westwood N Molecules. 2023; 28(23).

PMID: 38067614 PMC: 10707890. DOI: 10.3390/molecules28237885.


Advances on Cellulose Manufacture in Biphasic Reaction Media.

Fernandez-Bautista M, Martinez-Gomez S, Rivas S, Alonso J, Parajo J Int J Mol Sci. 2023; 24(15).

PMID: 37569779 PMC: 10418468. DOI: 10.3390/ijms241512404.


L Processing in Catalyzed Butanol-Water Media in the Scope of Lignocellulose Biorefineries.

Rivas S, Baldassari R, Parajo J, Raspolli Galletti A Polymers (Basel). 2023; 15(6).

PMID: 36987333 PMC: 10059024. DOI: 10.3390/polym15061553.


High value valorization of lignin as environmental benign antimicrobial.

Chen M, Li Y, Liu H, Zhang D, Shi Q, Zhong X Mater Today Bio. 2023; 18:100520.

PMID: 36590981 PMC: 9800644. DOI: 10.1016/j.mtbio.2022.100520.


Copper-Mediated Conversion of Complex Ethers to Esters: Enabling Biopolymer Depolymerisation under Mild Conditions.

Xiao G, Montgomery J, Lancefield C, Panovic I, Westwood N Chemistry. 2020; 26(54):12397-12402.

PMID: 32378750 PMC: 7589252. DOI: 10.1002/chem.202000088.