Acid hydrolysis and hydrogenation/hydrogenolysis reactions can be combined for catalytic conversion of cellulose into renewable biorefinery feedstocks by using heterogeneous bifunctional catalysts. In the present study a cooperative effect of heteropolyacids (HPA) and Ru nanoparticles supported on two carbon materials is demonstrated. The process can be suitable for the one-pot tandem reaction, yielding the conversion of cellulose into alkanediols (mainly propylene glycol and ethylene glycol). From a mechanistic point of view the differences in the distribution of polyol products, obtained from the cellulose reaction over monometallic Ru catalysts or over bifunctional Ru-HPAs materials, seem to be strongly determined by the competitive reac...
Due to the environmental crisis and an ever-increasing demand for energy, materials and chemicals, n...
A combination of heteropolyacids and Ru on carbon catalyzes the conversion of concentrated cellulose...
The catalytic valorization of cellulose is currently subject of intense research. Isosorbide is amon...
The catalytic conversion of lignocellulosic biomass to renewable and valuable chemicals has attracte...
The catalytic conversion of lignocellulosic biomass to obtain high added value compounds and fuels i...
Modern societies are facing a drastic demographic increase that induces economic and ecological conc...
Ru supported on activated carbon was found to be active for the transfer hydrogenation of cellulose ...
Efficient conversion of cellulose, the most abundant biomass on Earth, to chemicals in high yields r...
Catalysts consisting of Ru nanoparticles (1 wt%), supported on mesoporous activated carbons (ACs), w...
With the aim to produce the platform molecule sorbitol from biomass, the two-steps transformation of...
It is of great significance and challenge to achieve direct conversion of cellulose to specific poly...
Ruthenium-based catalysts were prepared by incipient wetness impregnation of different supports and ...
Cellulose and cellobiose were selectively converted into sorbitol over water-tolerant phosphotungsti...
The selective transformation of cellulose to C-6 alditols provides a feasible route towards the sust...
(Chemical Equation Presented) A green approach to efficient conversion of cellulose into hexitols an...
Due to the environmental crisis and an ever-increasing demand for energy, materials and chemicals, n...
A combination of heteropolyacids and Ru on carbon catalyzes the conversion of concentrated cellulose...
The catalytic valorization of cellulose is currently subject of intense research. Isosorbide is amon...
The catalytic conversion of lignocellulosic biomass to renewable and valuable chemicals has attracte...
The catalytic conversion of lignocellulosic biomass to obtain high added value compounds and fuels i...
Modern societies are facing a drastic demographic increase that induces economic and ecological conc...
Ru supported on activated carbon was found to be active for the transfer hydrogenation of cellulose ...
Efficient conversion of cellulose, the most abundant biomass on Earth, to chemicals in high yields r...
Catalysts consisting of Ru nanoparticles (1 wt%), supported on mesoporous activated carbons (ACs), w...
With the aim to produce the platform molecule sorbitol from biomass, the two-steps transformation of...
It is of great significance and challenge to achieve direct conversion of cellulose to specific poly...
Ruthenium-based catalysts were prepared by incipient wetness impregnation of different supports and ...
Cellulose and cellobiose were selectively converted into sorbitol over water-tolerant phosphotungsti...
The selective transformation of cellulose to C-6 alditols provides a feasible route towards the sust...
(Chemical Equation Presented) A green approach to efficient conversion of cellulose into hexitols an...
Due to the environmental crisis and an ever-increasing demand for energy, materials and chemicals, n...
A combination of heteropolyacids and Ru on carbon catalyzes the conversion of concentrated cellulose...
The catalytic valorization of cellulose is currently subject of intense research. Isosorbide is amon...