March 22, 2017
Journal Article

Chemoselective Methylation of Phenolic Hydroxyl Group Prevents Quinone Methide Formation and Repolymerization during Lignin Depolymerization

Abstract

Chemoselective blocking of the phenolic hydroxyl (Ar-OH) group by methylation was found to suppress secondary repolymerization and charring during lignin depolymerization. Methylation of Ar-OH prevents formation of reactive quinone methide intermediates, which are partly responsible for undesirable secondary repolymerization reactions. Instead, this structurally modified lignin produces more relatively low molecular weight products from lignin depolymerization compared to unmodified lignin. This result demonstrates that structural modification of lignin is desirable for production of low molecular weight phenolic products. This approach could be directed toward alteration of natural lignification processes to produce biomass more amenable to chemical depolymerization.

Revised: March 24, 2020 | Published: March 22, 2017

Citation

Kim K., T. Dutta, E.D. Walter, N.G. Isern, J.R. Cort, B.A. Simmons, and S. Singh. 2017. Chemoselective Methylation of Phenolic Hydroxyl Group Prevents Quinone Methide Formation and Repolymerization during Lignin Depolymerization. ACS Sustainable Chemistry & Engineering 5, no. 5:3913-3919. PNNL-SA-122183. doi:10.1021/acssuschemeng.6b03102