The use of heterogeneous catalysis to upgrade biomass wastes coming from lignocellulose into higher value-added chemicals is one of the most explored subjects in the prospective vision of bio-refinery. In this frame, a lot of interest has been driven towards biomass-derived building block molecules, such as furfural. Gold supported catalysts have been successfully proven to be highly active and selective in the furfural oxidative esterification to methyl-2-furoate under mild conditions by employing oxygen as benign oxidant. Particular attention has been given to the studies in which the reaction occurs even without base as co-catalyst, which would lead to a more green and economically advantageous process. The Au catalysts are also stable a...
Energy and the environment will always play key roles in society. The climate emergency cannot be ru...
The two benchmark biobased chemicals, 5-hydroxymethylfurfural and furfuraldehyde were successfully o...
Innovative transformations of furfural are highly desired: among these, the synthesis of alkyl furoa...
The use of heterogeneous catalysis to upgrade biomass wastes coming from lignocellulose into higher ...
The use of heterogeneous catalysis to upgrade biomass wastes coming from lignocellulose\ud into high...
The use of heterogeneous catalysis to upgrade biomass wastes coming from lignocellulose into higher...
Valorization of lignocellulosic biomass is a key to a sustainable chemical production industry. Furf...
The utilization of biomass and development of intensified processes are essential to establish a sus...
The non-edible nature of lignocellulose makes this an important raw material for future biorefinerie...
The emphasis of modern chemistry is to satisfy the needs of consumers by using methods that are sust...
© 2017 The Royal Society of Chemistry. The emphasis of modern chemistry is to satisfy the needs of c...
Bio-renewable fuels and chemicals are becoming increasingly important as humans continue to deplete ...
The depletion of fossil resources in the near future and the need to decrease greenhouse gas emissio...
Energy and the environment will always play key roles in society. The climate emergency cannot be ru...
The two benchmark biobased chemicals, 5-hydroxymethylfurfural and furfuraldehyde were successfully o...
Innovative transformations of furfural are highly desired: among these, the synthesis of alkyl furoa...
The use of heterogeneous catalysis to upgrade biomass wastes coming from lignocellulose into higher ...
The use of heterogeneous catalysis to upgrade biomass wastes coming from lignocellulose\ud into high...
The use of heterogeneous catalysis to upgrade biomass wastes coming from lignocellulose into higher...
Valorization of lignocellulosic biomass is a key to a sustainable chemical production industry. Furf...
The utilization of biomass and development of intensified processes are essential to establish a sus...
The non-edible nature of lignocellulose makes this an important raw material for future biorefinerie...
The emphasis of modern chemistry is to satisfy the needs of consumers by using methods that are sust...
© 2017 The Royal Society of Chemistry. The emphasis of modern chemistry is to satisfy the needs of c...
Bio-renewable fuels and chemicals are becoming increasingly important as humans continue to deplete ...
The depletion of fossil resources in the near future and the need to decrease greenhouse gas emissio...
Energy and the environment will always play key roles in society. The climate emergency cannot be ru...
The two benchmark biobased chemicals, 5-hydroxymethylfurfural and furfuraldehyde were successfully o...
Innovative transformations of furfural are highly desired: among these, the synthesis of alkyl furoa...