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Predicting lignin depolymerization yields from quantifiable properties using fractionated biorefinery lignins
- Source :
- Green Chem.. 19:5131-5143
- Publication Year :
- 2017
- Publisher :
- Royal Society of Chemistry (RSC), 2017.
-
Abstract
- Lignin depolymerization to aromatic monomers with high yields and selectivity is essential for the economic feasibility of many lignin-valorization strategies within integrated biorefining processes. Importantly, the quality and properties of the lignin source play an essential role in impacting the conversion chemistry, yet this relationship between lignin properties and lignin susceptibility to depolymerization is not well established. In this study, we quantitatively demonstrate how the detrimental effect of a pretreatment process on the properties of lignins, particularly β-O-4 content, limit high yields of aromatic monomers using three lignin depolymerization approaches: thioacidolysis, hydrogenolysis, and oxidation. Through pH-based fractionation of alkali-solubilized lignin from hybrid poplar, this study demonstrates that the properties of lignin, namely β-O-4 linkages, phenolic hydroxyl groups, molecular weight, and S/G ratios exhibit strong correlations with each other even after pretreatment. Furthermore, the differences in these properties lead to discernible trends in aromatic monomer yields using the three depolymerization techniques. Based on the interdependency of alkali lignin properties and its susceptibility to depolymerization, a model for the prediction of monomer yields was developed and validated for depolymerization by quantitative thioacidolysis. These results highlight the importance of the lignin properties for their suitability for an ether-cleaving depolymerization process, since the theoretical monomer yields grows as a second order function of the β-O-4 content. Therefore, this research encourages and provides a reference tool for future studies to identify new methods for lignin-first biomass pretreatment and lignin valorization that emphasize preservation of lignin qualities, apart from focusing on optimization of reaction conditions and catalyst selection.
- Subjects :
- 010405 organic chemistry
Depolymerization
fungi
technology, industry, and agriculture
food and beverages
Biomass
macromolecular substances
010402 general chemistry
Biorefinery
complex mixtures
01 natural sciences
Pollution
0104 chemical sciences
Catalysis
chemistry.chemical_compound
Monomer
chemistry
Hydrogenolysis
Environmental Chemistry
Lignin
Organic chemistry
Biorefining
Subjects
Details
- ISSN :
- 14639270 and 14639262
- Volume :
- 19
- Database :
- OpenAIRE
- Journal :
- Green Chem.
- Accession number :
- edsair.doi...........2be1e406cc88fbc1df6a99d068e591c7