Catalytic transfer hydrogenation of levulinic acid to gamma-valerolactone over a zirconium-based FDCA hybrid: insights into the effect of heteropoly acids
Author:
Affiliation:
1. Faculty of Chemical Engineering, Kunming University of Science and Technology, No. 727 South Jingming Road, Chenggong District, Kunming, 650500, Yunnan, China
Abstract
Funder
National Natural Science Foundation of China
Applied Basic Research Foundation of Yunnan Province
Publisher
Royal Society of Chemistry (RSC)
Subject
Energy Engineering and Power Technology,Fuel Technology,Renewable Energy, Sustainability and the Environment
Link
http://pubs.rsc.org/en/content/articlepdf/2023/SE/D3SE00434A
Reference60 articles.
1. Chemoselective hydrogenation of biomass derived 5-hydroxymethylfurfural to diols: Key intermediates for sustainable chemicals, materials and fuels
2. Catalytic conversion of 5-hydroxymethylfurfural to some value-added derivatives
3. Recent advances and future directions in plant and yeast engineering to improve lignocellulosic biofuel production
4. Production of γ-valerolactone from lignocellulosic biomass for sustainable fuels and chemicals supply
5. Heterogeneous Catalytic Hydrogenation of Levulinic Acid to γ‐Valerolactone with Formic Acid as Internal Hydrogen Source
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1. Catalytic transfer hydrogenation of α-angelica lactone over Nickel(II) modified UiO-66 metal organic framework under mild conditions;Materials Chemistry and Physics;2024-08
2. Enhanced transfer hydrogenation of bio-derived Ethyl levulinate to γ-valerolactone over Zr-based catalysts through a formic acid modification strategy;Molecular Catalysis;2024-07
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