LAPSE:2023.5478v1
Published Article

LAPSE:2023.5478v1
Depolymerization and Hydrogenation of Organosolv Eucalyptus Lignin by Using Nickel Raney Catalyst
February 23, 2023
Abstract
The use of lignocellulosic biomass to obtain biofuels and chemicals produces a large amount of lignin as a byproduct. Lignin valorization into chemicals needs efficient conversion processes to be developed. In this work, hydrocracking of organosolv lignin was performed by using nickel Raney catalyst. Organosolv lignin was obtained from the pretreatment of eucalyptus wood at 170 °C for 1 h by using 1/100/100 (w/v/v) ratio of biomass/oxalic acid solution (0.4% w/w)/1-butanol. The resulting organic phase of lignin in 1-butanol was used in hydrogenation tests. The conversion of lignin was carried out with a batch reactor equipped with a 0.3 L vessel with adjustable internal stirrer and heat control. The reactor was pressurized at 5 bar with hydrogen at room temperature, and then the temperature was raised to 250 °C and kept for 30 min. Operative conditions were optimized to achieve high conversion in monomers and to minimize the loss of solvent. At the best performance conditions, about 10 wt % of the lignin was solubilized into monomeric phenols. The need to find a trade-off between lignin conversion and solvent side reaction was highlighted.
The use of lignocellulosic biomass to obtain biofuels and chemicals produces a large amount of lignin as a byproduct. Lignin valorization into chemicals needs efficient conversion processes to be developed. In this work, hydrocracking of organosolv lignin was performed by using nickel Raney catalyst. Organosolv lignin was obtained from the pretreatment of eucalyptus wood at 170 °C for 1 h by using 1/100/100 (w/v/v) ratio of biomass/oxalic acid solution (0.4% w/w)/1-butanol. The resulting organic phase of lignin in 1-butanol was used in hydrogenation tests. The conversion of lignin was carried out with a batch reactor equipped with a 0.3 L vessel with adjustable internal stirrer and heat control. The reactor was pressurized at 5 bar with hydrogen at room temperature, and then the temperature was raised to 250 °C and kept for 30 min. Operative conditions were optimized to achieve high conversion in monomers and to minimize the loss of solvent. At the best performance conditions, about 10 wt % of the lignin was solubilized into monomeric phenols. The need to find a trade-off between lignin conversion and solvent side reaction was highlighted.
Record ID
Keywords
catalytic conversion, Hydrogen, lignin
Subject
Suggested Citation
Morgana M, Viola E, Zimbardi F, Cerone N, Romanelli A, Valerio V. Depolymerization and Hydrogenation of Organosolv Eucalyptus Lignin by Using Nickel Raney Catalyst. (2023). LAPSE:2023.5478v1
Author Affiliations
Morgana M: ENEA—Department of Energy Technologies and Renewable Energy Sources, Research Center of Trisaia, S.S.106 Jonica, km 419 +500, 75026 Rotondella, MT, Italy [ORCID]
Viola E: ENEA—Department of Energy Technologies and Renewable Energy Sources, Research Center of Trisaia, S.S.106 Jonica, km 419 +500, 75026 Rotondella, MT, Italy [ORCID]
Zimbardi F: ENEA—Department of Energy Technologies and Renewable Energy Sources, Research Center of Trisaia, S.S.106 Jonica, km 419 +500, 75026 Rotondella, MT, Italy
Cerone N: ENEA—Department of Energy Technologies and Renewable Energy Sources, Research Center of Trisaia, S.S.106 Jonica, km 419 +500, 75026 Rotondella, MT, Italy
Romanelli A: ENEA—Department of Energy Technologies and Renewable Energy Sources, Research Center of Trisaia, S.S.106 Jonica, km 419 +500, 75026 Rotondella, MT, Italy [ORCID]
Valerio V: ENEA—Department of Energy Technologies and Renewable Energy Sources, Research Center of Trisaia, S.S.106 Jonica, km 419 +500, 75026 Rotondella, MT, Italy
Viola E: ENEA—Department of Energy Technologies and Renewable Energy Sources, Research Center of Trisaia, S.S.106 Jonica, km 419 +500, 75026 Rotondella, MT, Italy [ORCID]
Zimbardi F: ENEA—Department of Energy Technologies and Renewable Energy Sources, Research Center of Trisaia, S.S.106 Jonica, km 419 +500, 75026 Rotondella, MT, Italy
Cerone N: ENEA—Department of Energy Technologies and Renewable Energy Sources, Research Center of Trisaia, S.S.106 Jonica, km 419 +500, 75026 Rotondella, MT, Italy
Romanelli A: ENEA—Department of Energy Technologies and Renewable Energy Sources, Research Center of Trisaia, S.S.106 Jonica, km 419 +500, 75026 Rotondella, MT, Italy [ORCID]
Valerio V: ENEA—Department of Energy Technologies and Renewable Energy Sources, Research Center of Trisaia, S.S.106 Jonica, km 419 +500, 75026 Rotondella, MT, Italy
Journal Name
Processes
Volume
9
Issue
7
First Page
1093
Year
2021
Publication Date
2021-06-23
ISSN
2227-9717
Version Comments
Original Submission
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PII: pr9071093, Publication Type: Journal Article
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LAPSE:2023.5478v1
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https://doi.org/10.3390/pr9071093
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Feb 23, 2023
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