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Production of Aromatic Compounds by Catalytic Depolymerization of Technical and Downstream Biorefinery Lignins

Lignocellulosic materials are promising alternatives to non-renewable fossil sources when producing aromatic compounds. Lignins from Populus salicaceae. Pinus radiata and Pinus pinaster from industrial wastes and biorefinery effluents were isolated and characterized. Lignin was depolymerized using h...

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Autores principales: Cornejo, Alfonso, Bimbela, Fernando, Moreira, Rui, Hablich, Karina, García-Yoldi, Íñigo, Maisterra, Maitane, Portugal, António, Gandía, Luis M., Martínez-Merino, Víctor
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7564559/
https://www.ncbi.nlm.nih.gov/pubmed/32962141
http://dx.doi.org/10.3390/biom10091338
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author Cornejo, Alfonso
Bimbela, Fernando
Moreira, Rui
Hablich, Karina
García-Yoldi, Íñigo
Maisterra, Maitane
Portugal, António
Gandía, Luis M.
Martínez-Merino, Víctor
author_facet Cornejo, Alfonso
Bimbela, Fernando
Moreira, Rui
Hablich, Karina
García-Yoldi, Íñigo
Maisterra, Maitane
Portugal, António
Gandía, Luis M.
Martínez-Merino, Víctor
author_sort Cornejo, Alfonso
collection PubMed
description Lignocellulosic materials are promising alternatives to non-renewable fossil sources when producing aromatic compounds. Lignins from Populus salicaceae. Pinus radiata and Pinus pinaster from industrial wastes and biorefinery effluents were isolated and characterized. Lignin was depolymerized using homogenous (NaOH) and heterogeneous (Ni-, Cu- or Ni-Cu-hydrotalcites) base catalysis and catalytic hydrogenolysis using Ru/C. When homogeneous base catalyzed depolymerization (BCD) and Ru/C hydrogenolysis were combined on poplar lignin, the aromatics amount was ca. 11 wt.%. Monomer distributions changed depending on the feedstock and the reaction conditions. Aqueous NaOH produced cleavage of the alkyl side chain that was preserved when using modified hydrotalcite catalysts or Ru/C-catalyzed hydrogenolysis in ethanol. Depolymerization using hydrotalcite catalysts in ethanol produced monomers bearing carbonyl groups on the alkyl side chain. The analysis of the reaction mixtures was done by size exclusion chromatography (SEC) and diffusion ordered nuclear magnetic resonance spectroscopy (DOSY NMR). (31)P NMR and heteronuclear single quantum coherence spectroscopy (HSQC) were also used in this study. The content in poly-(hydroxy)-aromatic ethers in the reaction mixtures decreased upon thermal treatments in ethanol. It was concluded that thermo-solvolysis is key in lignin depolymerization, and that the synergistic effect of Ni and Cu provided monomers with oxidized alkyl side chains.
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spelling pubmed-75645592020-10-29 Production of Aromatic Compounds by Catalytic Depolymerization of Technical and Downstream Biorefinery Lignins Cornejo, Alfonso Bimbela, Fernando Moreira, Rui Hablich, Karina García-Yoldi, Íñigo Maisterra, Maitane Portugal, António Gandía, Luis M. Martínez-Merino, Víctor Biomolecules Article Lignocellulosic materials are promising alternatives to non-renewable fossil sources when producing aromatic compounds. Lignins from Populus salicaceae. Pinus radiata and Pinus pinaster from industrial wastes and biorefinery effluents were isolated and characterized. Lignin was depolymerized using homogenous (NaOH) and heterogeneous (Ni-, Cu- or Ni-Cu-hydrotalcites) base catalysis and catalytic hydrogenolysis using Ru/C. When homogeneous base catalyzed depolymerization (BCD) and Ru/C hydrogenolysis were combined on poplar lignin, the aromatics amount was ca. 11 wt.%. Monomer distributions changed depending on the feedstock and the reaction conditions. Aqueous NaOH produced cleavage of the alkyl side chain that was preserved when using modified hydrotalcite catalysts or Ru/C-catalyzed hydrogenolysis in ethanol. Depolymerization using hydrotalcite catalysts in ethanol produced monomers bearing carbonyl groups on the alkyl side chain. The analysis of the reaction mixtures was done by size exclusion chromatography (SEC) and diffusion ordered nuclear magnetic resonance spectroscopy (DOSY NMR). (31)P NMR and heteronuclear single quantum coherence spectroscopy (HSQC) were also used in this study. The content in poly-(hydroxy)-aromatic ethers in the reaction mixtures decreased upon thermal treatments in ethanol. It was concluded that thermo-solvolysis is key in lignin depolymerization, and that the synergistic effect of Ni and Cu provided monomers with oxidized alkyl side chains. MDPI 2020-09-18 /pmc/articles/PMC7564559/ /pubmed/32962141 http://dx.doi.org/10.3390/biom10091338 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Cornejo, Alfonso
Bimbela, Fernando
Moreira, Rui
Hablich, Karina
García-Yoldi, Íñigo
Maisterra, Maitane
Portugal, António
Gandía, Luis M.
Martínez-Merino, Víctor
Production of Aromatic Compounds by Catalytic Depolymerization of Technical and Downstream Biorefinery Lignins
title Production of Aromatic Compounds by Catalytic Depolymerization of Technical and Downstream Biorefinery Lignins
title_full Production of Aromatic Compounds by Catalytic Depolymerization of Technical and Downstream Biorefinery Lignins
title_fullStr Production of Aromatic Compounds by Catalytic Depolymerization of Technical and Downstream Biorefinery Lignins
title_full_unstemmed Production of Aromatic Compounds by Catalytic Depolymerization of Technical and Downstream Biorefinery Lignins
title_short Production of Aromatic Compounds by Catalytic Depolymerization of Technical and Downstream Biorefinery Lignins
title_sort production of aromatic compounds by catalytic depolymerization of technical and downstream biorefinery lignins
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7564559/
https://www.ncbi.nlm.nih.gov/pubmed/32962141
http://dx.doi.org/10.3390/biom10091338
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