Accessing monomers from lignin through carbon-carbon bond cleavage
- PMID: 39367248
- DOI: 10.1038/s41570-024-00652-9
Accessing monomers from lignin through carbon-carbon bond cleavage
Abstract
Lignin, the heterogeneous aromatic macromolecule found in the cell walls of vascular plants, is an abundant feedstock for the production of biochemicals and biofuels. Many valorization schemes rely on lignin depolymerization, with decades of research focused on accessing monomers through C-O bond cleavage, given the abundance of β-O-4 bonds in lignin and the large number of available C-O bond cleavage strategies. Monomer yields are, however, invariably lower than desired, owing to the presence of recalcitrant C-C bonds whose selective cleavage remains a major challenge in catalysis. In this Review, we highlight lignin C-C cleavage reactions, including those of linkages arising from biosynthesis (β-1, β-5, β-β and 5-5) and industrial processing (5-CH2-5 and α-5). We examine multiple approaches to C-C cleavage, including homogeneous and heterogeneous catalysis, photocatalysis and biocatalysis, to identify promising strategies for further research and provide guidelines for definitive measurements of lignin C-C bond cleavage.
© 2024. Springer Nature Limited.
References
-
- Katahira, R., Elder, T. J. & Beckham, G. T. in Lignin Valorization: Emerging Approaches (ed. Beckham, G. T.) Ch. 1 (The Royal Society of Chemistry, 2018).
-
- del Río, J. C. et al. Lignin monomers from beyond the canonical monolignol biosynthetic pathway: another brick in the wall. ACS Sustain. Chem. Eng. 8, 4997–5012 (2020). - DOI
-
- del Río J. C. et al. in Recent Advances in Polyphenol Research Vol. 7 (eds Dreher Reed, J. et al.) Ch. 7 (Wiley, 2021).
-
- Cabane, M., Afif, D. & Hawkins S. in Advances in Botanical Research Vol. 61 (eds Jouanin, L. & Lapierre, C.) Ch. 7 (Academic Press, 2012).
Publication types
MeSH terms
Substances
Grants and funding
LinkOut - more resources
Full Text Sources
