Journal of Biomaterials and Nanobiotechnology

Volume 8, Issue 1 (January 2017)

ISSN Print: 2158-7027   ISSN Online: 2158-7043

Google-based Impact Factor: 1.77  Citations  

Hydrothermal Liquefaction of Lignin

HTML  XML Download Download as PDF (Size: 3062KB)  PP. 96-108  
DOI: 10.4236/jbnb.2017.81007    4,015 Downloads   7,951 Views  Citations

ABSTRACT

The majority of platform chemicals are currently provided through crude oil processes. Nevertheless, the substitution of the crude oil with biomass should be the ecological aim. Lignin, an aromatic macromolecule, may play an important role in that exchange, as it is the only bio based source of aromatic compounds. For instance, it could be a source of bifunctional aromatic molecules, like the monocyclic compounds catechol or guaiacol, or bifunctional oligomers. However, no process for the production of aromatics from lignin in technical scale has been established until now. Hence, the focus of this work is to clarify the chemical degradation mechanism under hydrothermal conditions, to liquefy lignin delivering high functional molecules and to increase the yield and selectivity of the cleavage towards bifunctional molecules like catechol. The combination of fast hydrolysis, thermal degradation reactions and hydrogenation drives the hydrothermal liquefaction; this gives the possibility to narrow down the product spectrum in comparison to other “dry” cleavage methods, towards a higher yield of e.g. catechols.

Share and Cite:

Schuler, J. , Hornung, U. , Kruse, A. , Dahmen, N. and Sauer, J. (2017) Hydrothermal Liquefaction of Lignin. Journal of Biomaterials and Nanobiotechnology, 8, 96-108. doi: 10.4236/jbnb.2017.81007.

Cited by

[1] The Impact of Sulfur-Containing Inorganic Compounds during the Depolymerization of Lignin by Hydrothermal Liquefaction of Black Liquor
Energy & …, 2024
[2] From Pulp to Aromatic Products─ Reaction Pathways of Lignin Depolymerization
Energy & …, 2024
[3] High extraction and excellent anti-UV and anti-oxidant proprieties of lignin from Reseda Luteola L. waste by organosolv process
International Journal of …, 2024
[4] A Review of Hydrothermal Biomass Liquefaction: Operating Parameters, Reaction Mechanism, and Bio-Oil Yields and Compositions
Energy & …, 2024
[5] Agricultural Waste Liquefied Hydrothermally using Heterogeneous Catalyst
IOP Conference Series: Earth and …, 2023
[6] Platform chemicals from hardwood black liquor via hydrothermal liquefaction: influence of process conditions on product yields and quality
Sustainable Energy & Fuels, 2023
[7] Extraction of phenolic compounds from hydrothermal processing of black liquor: Effect of reactor type and pH of recovered liquid phase
Chemical Engineering …, 2023
[8] Lignin Depolymerization for Its Valorization
BioEnergy Research, 2023
[9] De-polymerization/De-fragmentation Aided Extraction of Value-Added Chemicals from Lignin
Zero Waste Biorefinery, 2022
[10] A Review on the Valorization of Biorefinery Based Waste Lignin: Exploratory Potential Market Approach
Advances in Chemical, Bio and …, 2022
[11] Zukunftsfähige Agrarwirtschaft: Basis für gesunde Ernährung, Klimaschutz und den Kampf gegen Hunger
2022
[12] Valorização da lignina-um panorama geral
2022
[13] Effect of co-liquefaction of lignin and laminaria saccharina on optimization of bio-oil yield
Energy Conversion and Management …, 2022
[14] Mystifications and misconceptions of lignin: revisiting understandings
Green Chemistry, 2022
[15] FeCl3-supported solvothermal liquefaction of Miscanthus in methanol
Energy, 2022
[16] Biobased additives for asphalt applications produced from the hydrothermal liquefaction of sewage sludge
Martinez, S Zhou… - Journal of …, 2022
[17] Exploring the compatibility between hydrothermal depolymerization of alkaline lignin from sugarcane bagasse and metabolization of the aromatics by bacteria
International Journal of …, 2022
[18] Microbial production of cis, cis-muconic acid from hydrothermally converted lignocellulose
2022
[19] Production of Biofuels from Various Lignocellulosic Streams by Liquefaction
2022
[20] Thermochemical methods for upgrading of lignin to aromatic chemicals
Biomass, Biofuels, Biochemicals, 2022
[21] Thermochemical biorefineries for the conversion of lignocellulosic biomass: improvements of fast pyrolysis and hydrothermal processes for fuels and chemicals …
2021
[22] Hydrothermal Liquefaction Conversion of Lignocelluloses and waste Biomass Using Zeolite Catalyst
2021
[23] Using Isopropanol as a Capping Agent in the Hydrothermal Liquefaction of Kraft Lignin in Near-Critical Water
2021
[24] Numerical modeling and validation of hydrothermal liquefaction of a lignin particle for biocrude production
2021
[25] Lignin-Based Polyols with Controlled Microstructure by Cationic Ring Opening Polymerization
2021
[26] Deep eutectic solvent assists Bacillus australimaris to transform alkali lignin waste into small aromatic compounds
Journal of Cleaner …, 2021
[27] HYDROTHERMAL LIQUEFACTION OF BLACK LIQUOR
2021
[28] 农林废弃生物质资源精深加工技术进展
材料导报, 2021
[29] Bio-catalytic upgrading of phenolic components present in waste water of a hydrothermal liquefaction plant
2021
[30] Thermochemical biorefineries for the conversion of lignocellulosic biomass: improvements of fast pyrolysis and hydrothermal processes for fuels and chemicals precursors
THESIS, 2020
[31] Hydrothermal Depolymerization of Biorefinery Lignin-Rich Streams: Influence of Reaction Conditions and Catalytic Additives on the Organic Monomers Yields in …
2020
[32] Sub-and Supercritical Water Liquefaction of Kraft Lignin and Black Liquor Derived Lignin
2020
[33] Hydrothermal liquefaction of wood using a modified multistage shrinking-core model
2020
[34] A novel and efficient approach to obtain lignin-based polyols with potential industrial application
2020
[35] Heterogeneous catalysts for hydrothermal liquefaction of lignocellulosic biomass: A review
2020
[36] Vapor pressures of phenolic compounds found in pyrolysis oil
2020
[37] Apple waste: A sustainable source of carbon materials and valuable compounds
2019
[38] Untersuchung von Lignin aus Papierabwässern mittels Py-GCxGC/TOF-MS und Ofenpyrolyse
2019
[39] A field of dreams: Lignin valorization into chemicals, materials, fuels, and health-care products
2019
[40] Techno‐economic comparative assessment of novel lignin depolymerization routes to bio‐based aromatics
2019
[41] Multiphase Equilibria Modeling of Fast Pyrolysis Bio-Oils. Group Contribution Associating Equation of State Extension to Lignin Monomers and Derivatives
2019
[42] Catalytic Processes For Lignin Valorization into Fuels and Chemicals (Aromatics)
2019
[43] Hydrothermal Liquefaction of Lignin to Produce Bio-crude: Comparative Analysis of the Effects of Feedstock type and Operating Conditionson Bio-crude
2019
[44] Thermochemische Depolymerisation von Lignin zur Gewinnung von Aromaten.
… Ingenieur Technik (CIT …, 2019
[45] From lignin to nylon: Cascaded chemical and biochemical conversion using metabolically engineered Pseudomonas putida
Metabolic Engineering, 2018
[46] Synergistic and antagonistic interactions during hydrothermal liquefaction of soybean oil, soy protein, cellulose, xylose, and lignin
ACS Sustainable Chemistry & Engineering, 2018
[47] Thermochemical Depolymerization of Lignin for the Production of Aromatic Compounds
Chemie Ingenieur Technik, 2018
[48] Hydrothermal liquefaction of protein-containing biomass: study of model compounds for Maillard reactions
2018
[49] Production of bio-phenols for industrial application: Scale-up of the base-catalyzed depolymerization of lignin
2017

Copyright © 2026 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.