Synergy in Lignin Upgrading by a Combination of Cu-Based Mixed Oxide and Ni-Phosphide Catalysts in Supercritical Ethanol

超临界乙醇中铜基混合氧化物和镍磷化物催化剂组合对木质素升级的协同作用

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Abstract

The depolymerization of lignin to bioaromatics usually requires a hydrodeoxygenation (HDO) step to lower the oxygen content. A mixed Cu-Mg-Al oxide (CuMgAlO (x) ) is an effective catalyst for the depolymerization of lignin in supercritical ethanol. We explored the use of Ni-based cocatalysts, i.e. Ni/SiO(2), Ni(2)P/SiO(2), and Ni/ASA (ASA = amorphous silica alumina), with the aim of combining lignin depolymerization and HDO in a single reaction step. While the silica-supported catalysts were themselves hardly active in lignin upgrading, Ni/ASA displayed comparable lignin monomer yield as CuMgAlO (x) . A drawback of using an acidic support is extensive dehydration of the ethanol solvent. Instead, combining CuMgAlO (x) with Ni/SiO(2) and especially Ni(2)P/SiO(2) proved to be effective in increasing the lignin monomer yield, while at the same time reducing the oxygen content of the products. With Ni(2)P/SiO(2), the lignin monomer yield was 53 wt %, leading to nearly complete deoxygenation of the aromatic products.

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