Depolymerization and Hydrogenation of Organosolv Eucalyptus Lignin by Using Nickel Raney Catalyst

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...

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Main Authors: Massimo Morgana, Egidio Viola, Francesco Zimbardi, Nadia Cerone, Assunta Romanelli, Vito Valerio
Format: Article
Language:English
Published: MDPI AG 2021-06-01
Series:Processes
Subjects:
Online Access:https://www.mdpi.com/2227-9717/9/7/1093
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spelling doaj-0ea3562885524f87a2f4110ed0fc266d2021-07-23T14:02:55ZengMDPI AGProcesses2227-97172021-06-0191093109310.3390/pr9071093Depolymerization and Hydrogenation of Organosolv Eucalyptus Lignin by Using Nickel Raney CatalystMassimo Morgana0Egidio Viola1Francesco Zimbardi2Nadia Cerone3Assunta Romanelli4Vito Valerio5ENEA—Department of Energy Technologies and Renewable Energy Sources, Research Center of Trisaia, S.S.106 Jonica, km 419 +500, 75026 Rotondella, MT, ItalyENEA—Department of Energy Technologies and Renewable Energy Sources, Research Center of Trisaia, S.S.106 Jonica, km 419 +500, 75026 Rotondella, MT, ItalyENEA—Department of Energy Technologies and Renewable Energy Sources, Research Center of Trisaia, S.S.106 Jonica, km 419 +500, 75026 Rotondella, MT, ItalyENEA—Department of Energy Technologies and Renewable Energy Sources, Research Center of Trisaia, S.S.106 Jonica, km 419 +500, 75026 Rotondella, MT, ItalyENEA—Department of Energy Technologies and Renewable Energy Sources, Research Center of Trisaia, S.S.106 Jonica, km 419 +500, 75026 Rotondella, MT, ItalyENEA—Department of Energy Technologies and Renewable Energy Sources, Research Center of Trisaia, S.S.106 Jonica, km 419 +500, 75026 Rotondella, MT, ItalyThe 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 (<i>w</i>/<i>v</i>/<i>v</i>) ratio of biomass/oxalic acid solution (0.4% <i>w</i>/<i>w</i>)/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.https://www.mdpi.com/2227-9717/9/7/1093lignincatalytic conversionhydrogen
collection DOAJ
language English
format Article
sources DOAJ
author Massimo Morgana
Egidio Viola
Francesco Zimbardi
Nadia Cerone
Assunta Romanelli
Vito Valerio
spellingShingle Massimo Morgana
Egidio Viola
Francesco Zimbardi
Nadia Cerone
Assunta Romanelli
Vito Valerio
Depolymerization and Hydrogenation of Organosolv Eucalyptus Lignin by Using Nickel Raney Catalyst
Processes
lignin
catalytic conversion
hydrogen
author_facet Massimo Morgana
Egidio Viola
Francesco Zimbardi
Nadia Cerone
Assunta Romanelli
Vito Valerio
author_sort Massimo Morgana
title Depolymerization and Hydrogenation of Organosolv Eucalyptus Lignin by Using Nickel Raney Catalyst
title_short Depolymerization and Hydrogenation of Organosolv Eucalyptus Lignin by Using Nickel Raney Catalyst
title_full Depolymerization and Hydrogenation of Organosolv Eucalyptus Lignin by Using Nickel Raney Catalyst
title_fullStr Depolymerization and Hydrogenation of Organosolv Eucalyptus Lignin by Using Nickel Raney Catalyst
title_full_unstemmed Depolymerization and Hydrogenation of Organosolv Eucalyptus Lignin by Using Nickel Raney Catalyst
title_sort depolymerization and hydrogenation of organosolv eucalyptus lignin by using nickel raney catalyst
publisher MDPI AG
series Processes
issn 2227-9717
publishDate 2021-06-01
description 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 (<i>w</i>/<i>v</i>/<i>v</i>) ratio of biomass/oxalic acid solution (0.4% <i>w</i>/<i>w</i>)/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.
topic lignin
catalytic conversion
hydrogen
url https://www.mdpi.com/2227-9717/9/7/1093
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