Cargando…

Reductive catalytic fractionation of pine wood: elucidating and quantifying the molecular structures in the lignin oil

In-depth structural analysis of biorefined lignin is imperative to understand its physicochemical properties, essential for its efficient valorization to renewable materials and chemicals. Up to now, research on Reductive Catalytic Fractionation (RCF) of lignocellulose biomass, an emerging biorefine...

Descripción completa

Detalles Bibliográficos
Autores principales: Van Aelst, K., Van Sinay, E., Vangeel, T., Cooreman, E., Van den Bossche, G., Renders, T., Van Aelst, J., Van den Bosch, S., Sels, B. F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8162782/
https://www.ncbi.nlm.nih.gov/pubmed/34094394
http://dx.doi.org/10.1039/d0sc04182c
_version_ 1783700781832077312
author Van Aelst, K.
Van Sinay, E.
Vangeel, T.
Cooreman, E.
Van den Bossche, G.
Renders, T.
Van Aelst, J.
Van den Bosch, S.
Sels, B. F.
author_facet Van Aelst, K.
Van Sinay, E.
Vangeel, T.
Cooreman, E.
Van den Bossche, G.
Renders, T.
Van Aelst, J.
Van den Bosch, S.
Sels, B. F.
author_sort Van Aelst, K.
collection PubMed
description In-depth structural analysis of biorefined lignin is imperative to understand its physicochemical properties, essential for its efficient valorization to renewable materials and chemicals. Up to now, research on Reductive Catalytic Fractionation (RCF) of lignocellulose biomass, an emerging biorefinery technology, has strongly focused on the formation, separation and quantitative analysis of the abundant lignin-derived phenolic monomers. However, detailed structural information on the linkages in RCF lignin oligomers, constituting up to 50 wt% of RCF lignin, and their quantification, is currently lacking. This study discloses new detailed insights into the pine wood RCF lignin oil's molecular structure through the combination of fractionation and systematic analysis, resulting in the first assignment of the major RCF-derived structural units in the (1)H–(13)C HSQC NMR spectrum of the RCF oligomers. Specifically, β-5 γ-OH, β-5 ethyl, β-1 γ-OH, β-1 ethyl, β-β 2x γ-OH, β-β THF, and 5-5 inter-unit linkages were assigned unambiguously, resulting in the quantification of over 80% of the lignin inter-unit linkages and end-units. Detailed inspection of the native lignin inter-unit linkages and their conversion reveals the occurring hydrogenolysis chemistry and the unambiguous proof of absence of lignin fragment condensation during proper RCF processing. Overall, the study offers an advanced analytical toolbox for future RCF lignin conversion and lignin structural analysis research, and valuable insights for lignin oil valorization purposes.
format Online
Article
Text
id pubmed-8162782
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-81627822021-06-04 Reductive catalytic fractionation of pine wood: elucidating and quantifying the molecular structures in the lignin oil Van Aelst, K. Van Sinay, E. Vangeel, T. Cooreman, E. Van den Bossche, G. Renders, T. Van Aelst, J. Van den Bosch, S. Sels, B. F. Chem Sci Chemistry In-depth structural analysis of biorefined lignin is imperative to understand its physicochemical properties, essential for its efficient valorization to renewable materials and chemicals. Up to now, research on Reductive Catalytic Fractionation (RCF) of lignocellulose biomass, an emerging biorefinery technology, has strongly focused on the formation, separation and quantitative analysis of the abundant lignin-derived phenolic monomers. However, detailed structural information on the linkages in RCF lignin oligomers, constituting up to 50 wt% of RCF lignin, and their quantification, is currently lacking. This study discloses new detailed insights into the pine wood RCF lignin oil's molecular structure through the combination of fractionation and systematic analysis, resulting in the first assignment of the major RCF-derived structural units in the (1)H–(13)C HSQC NMR spectrum of the RCF oligomers. Specifically, β-5 γ-OH, β-5 ethyl, β-1 γ-OH, β-1 ethyl, β-β 2x γ-OH, β-β THF, and 5-5 inter-unit linkages were assigned unambiguously, resulting in the quantification of over 80% of the lignin inter-unit linkages and end-units. Detailed inspection of the native lignin inter-unit linkages and their conversion reveals the occurring hydrogenolysis chemistry and the unambiguous proof of absence of lignin fragment condensation during proper RCF processing. Overall, the study offers an advanced analytical toolbox for future RCF lignin conversion and lignin structural analysis research, and valuable insights for lignin oil valorization purposes. The Royal Society of Chemistry 2020-09-26 /pmc/articles/PMC8162782/ /pubmed/34094394 http://dx.doi.org/10.1039/d0sc04182c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Van Aelst, K.
Van Sinay, E.
Vangeel, T.
Cooreman, E.
Van den Bossche, G.
Renders, T.
Van Aelst, J.
Van den Bosch, S.
Sels, B. F.
Reductive catalytic fractionation of pine wood: elucidating and quantifying the molecular structures in the lignin oil
title Reductive catalytic fractionation of pine wood: elucidating and quantifying the molecular structures in the lignin oil
title_full Reductive catalytic fractionation of pine wood: elucidating and quantifying the molecular structures in the lignin oil
title_fullStr Reductive catalytic fractionation of pine wood: elucidating and quantifying the molecular structures in the lignin oil
title_full_unstemmed Reductive catalytic fractionation of pine wood: elucidating and quantifying the molecular structures in the lignin oil
title_short Reductive catalytic fractionation of pine wood: elucidating and quantifying the molecular structures in the lignin oil
title_sort reductive catalytic fractionation of pine wood: elucidating and quantifying the molecular structures in the lignin oil
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8162782/
https://www.ncbi.nlm.nih.gov/pubmed/34094394
http://dx.doi.org/10.1039/d0sc04182c
work_keys_str_mv AT vanaelstk reductivecatalyticfractionationofpinewoodelucidatingandquantifyingthemolecularstructuresintheligninoil
AT vansinaye reductivecatalyticfractionationofpinewoodelucidatingandquantifyingthemolecularstructuresintheligninoil
AT vangeelt reductivecatalyticfractionationofpinewoodelucidatingandquantifyingthemolecularstructuresintheligninoil
AT cooremane reductivecatalyticfractionationofpinewoodelucidatingandquantifyingthemolecularstructuresintheligninoil
AT vandenbosscheg reductivecatalyticfractionationofpinewoodelucidatingandquantifyingthemolecularstructuresintheligninoil
AT renderst reductivecatalyticfractionationofpinewoodelucidatingandquantifyingthemolecularstructuresintheligninoil
AT vanaelstj reductivecatalyticfractionationofpinewoodelucidatingandquantifyingthemolecularstructuresintheligninoil
AT vandenboschs reductivecatalyticfractionationofpinewoodelucidatingandquantifyingthemolecularstructuresintheligninoil
AT selsbf reductivecatalyticfractionationofpinewoodelucidatingandquantifyingthemolecularstructuresintheligninoil