Lignin, the most abundant aromatic biopolymer on Earth, is often considered a biorefinery by-product, despite its potential to be valorized into high-added-value chemicals and fuels. In this work, an integrated superstructure-based optimization model was set up and optimized using mixed-integer non-linear programming for the conversion of technical lignin to three main biobased products: aromatic monomers, phenol-formaldehyde resins, and aromatic aldehydes/acids. Several alternative conversion pathways were simultaneously compared to assess the profitability of lignins-based processes by predicting the performance of technologies with different TRL. Upon employing key technologies such as hydrothermal liquefaction, dissolution in solvent, o...
Lignin is the second most abundant polymer in nature, which is also widely generated during biomass ...
Lignin is the second most abundant polymer in nature, which is also widely generated during biomass ...
Lignin is the second most abundant polymer in nature, which is also widely generated during biomass ...
Lignin, the most abundant aromatic biopolymer on Earth, is often considered a biorefinery by-product...
Lignin, the most abundant aromatic biopolymer on Earth, is often considered a biorefinery by-product...
Lignin, the most abundant aromatic biopolymer on Earth, is often considered a biorefinery by-product...
Lignin, the most abundant aromatic biopolymer on Earth, is often considered a biorefinery by-product...
Lignin, the most abundant aromatic biopolymer on Earth, is often considered a biorefinery by-product...
Kraft lignin conversion to value-added products is an alternative way to manage the main pulp and pa...
Kraft lignin conversion to value-added products is an alternative way to manage the main pulp and pa...
Kraft lignin conversion to value-added products is an alternative way to manage the main pulp and pa...
Kraft lignin conversion to value-added products is an alternative way to manage the main pulp and pa...
Kraft lignin conversion to value-added products is an alternative way to manage the main pulp and pa...
Kraft lignin conversion to value-added products is an alternative way to manage the main pulp and pa...
Lignin is the second most abundant polymer in nature, which is also widely generated during biomass ...
Lignin is the second most abundant polymer in nature, which is also widely generated during biomass ...
Lignin is the second most abundant polymer in nature, which is also widely generated during biomass ...
Lignin is the second most abundant polymer in nature, which is also widely generated during biomass ...
Lignin, the most abundant aromatic biopolymer on Earth, is often considered a biorefinery by-product...
Lignin, the most abundant aromatic biopolymer on Earth, is often considered a biorefinery by-product...
Lignin, the most abundant aromatic biopolymer on Earth, is often considered a biorefinery by-product...
Lignin, the most abundant aromatic biopolymer on Earth, is often considered a biorefinery by-product...
Lignin, the most abundant aromatic biopolymer on Earth, is often considered a biorefinery by-product...
Kraft lignin conversion to value-added products is an alternative way to manage the main pulp and pa...
Kraft lignin conversion to value-added products is an alternative way to manage the main pulp and pa...
Kraft lignin conversion to value-added products is an alternative way to manage the main pulp and pa...
Kraft lignin conversion to value-added products is an alternative way to manage the main pulp and pa...
Kraft lignin conversion to value-added products is an alternative way to manage the main pulp and pa...
Kraft lignin conversion to value-added products is an alternative way to manage the main pulp and pa...
Lignin is the second most abundant polymer in nature, which is also widely generated during biomass ...
Lignin is the second most abundant polymer in nature, which is also widely generated during biomass ...
Lignin is the second most abundant polymer in nature, which is also widely generated during biomass ...
Lignin is the second most abundant polymer in nature, which is also widely generated during biomass ...