The one-step ethanolysis approach to upgrade lignin to monomeric aromatics using a CuMgAl mixed oxide catalyst is studied in detail. The influence of reaction temperature (200-420 °C) on the product distribution is investigated. At low temperature (200-250 °C), recondensation is dominant, while char-forming reactions become significant at high reaction temperature (>380 °C). At preferred intermediate temperatures (300-340 °C), char-forming reactions are effectively suppressed by alkylation and Guerbet and esterification reactions. This shifts the reaction toward depolymerization, explaining high monomeric aromatics yield. Carbon-14 dating analysis of the lignin residue revealed that a substantial amount of the carbon in the lignin residu...
This Chapter explains the roles of the catalyst and solvent. In lignin depolymerization by CuMgAl mi...
This Chapter explains the roles of the catalyst and solvent. In lignin depolymerization by CuMgAl mi...
This Chapter explains the roles of the catalyst and solvent. In lignin depolymerization by CuMgAl mi...
The one-step ethanolysis approach to upgrade lignin to monomeric aromatics using a CuMgAl mixed oxid...
The one-step ethanolysis approach to upgrade lignin to monomeric aromatics using a CuMgAl mixed oxid...
The one-step ethanolysis approach to upgrade lignin to monomeric aromatics using a CuMgAl mixed oxid...
The one-step ethanolysis approach to upgrade lignin to monomeric aromatics using a CuMgAl mixed oxid...
\u3cp\u3eThe one-step ethanolysis approach to upgrade lignin to monomeric aromatics using a CuMgAl m...
The one-step ethanolysis approach to upgrade lignin to monomeric aromatics using a CuMgAl mixed oxid...
The one-step ethanolysis approach to upgrade lignin to monomeric aromatics using a CuMgAl mixed oxid...
The one-step ethanolysis approach to upgrade lignin to monomeric aromatics using a CuMgAl mixed oxid...
The one-step ethanolysis approach to upgrade lignin to monomeric aromatics using a CuMgAl mixed oxid...
The one-step ethanolysis approach to upgrade lignin to monomeric aromatics using a CuMgAl mixed oxid...
The one-step ethanolysis approach to upgrade lignin to monomeric aromatics using a CuMgAl mixed oxid...
The one-step ethanolysis approach to upgrade lignin to monomeric aromatics using a CuMgAl mixed oxid...
This Chapter explains the roles of the catalyst and solvent. In lignin depolymerization by CuMgAl mi...
This Chapter explains the roles of the catalyst and solvent. In lignin depolymerization by CuMgAl mi...
This Chapter explains the roles of the catalyst and solvent. In lignin depolymerization by CuMgAl mi...
The one-step ethanolysis approach to upgrade lignin to monomeric aromatics using a CuMgAl mixed oxid...
The one-step ethanolysis approach to upgrade lignin to monomeric aromatics using a CuMgAl mixed oxid...
The one-step ethanolysis approach to upgrade lignin to monomeric aromatics using a CuMgAl mixed oxid...
The one-step ethanolysis approach to upgrade lignin to monomeric aromatics using a CuMgAl mixed oxid...
\u3cp\u3eThe one-step ethanolysis approach to upgrade lignin to monomeric aromatics using a CuMgAl m...
The one-step ethanolysis approach to upgrade lignin to monomeric aromatics using a CuMgAl mixed oxid...
The one-step ethanolysis approach to upgrade lignin to monomeric aromatics using a CuMgAl mixed oxid...
The one-step ethanolysis approach to upgrade lignin to monomeric aromatics using a CuMgAl mixed oxid...
The one-step ethanolysis approach to upgrade lignin to monomeric aromatics using a CuMgAl mixed oxid...
The one-step ethanolysis approach to upgrade lignin to monomeric aromatics using a CuMgAl mixed oxid...
The one-step ethanolysis approach to upgrade lignin to monomeric aromatics using a CuMgAl mixed oxid...
The one-step ethanolysis approach to upgrade lignin to monomeric aromatics using a CuMgAl mixed oxid...
This Chapter explains the roles of the catalyst and solvent. In lignin depolymerization by CuMgAl mi...
This Chapter explains the roles of the catalyst and solvent. In lignin depolymerization by CuMgAl mi...
This Chapter explains the roles of the catalyst and solvent. In lignin depolymerization by CuMgAl mi...