The catalytic properties of niobic acid (Nb2O5·nH2O) and niobium phosphate (NbOPO4) surfaces were studied in the reaction of fructose dehydration carried out in water. The reaction was performed in a continuous reactor at different temperatures 90–110 °C and pressures (from 2 to 6 bar). Superior activity and selectivity to 5-hydroxymethyl-2-furaldehyde (HMF) of niobium phosphate compared to niobic acid was observed. The initial higher catalytic performance of niobium phosphate than niobic acid could be related to the higher effective acidity of its surface, as was evidenced by acid–base titrations realized in different polar liquids. Deactivation studies showed a deeper decay for niobium phosphate than niobic acid at short time on stream, w...
In this work, two acidic Nb-P-Si mixed oxide gel-derived materials characterized by Nb/P molar ratio...
The lively acidic properties in water of niobium phosphate (NBP) catalyst and NBP modified samples b...
The aim of this work was to optimize the acid-catalyzed conversion of glucose into 5-hydroxymethylfu...
The catalytic properties of niobic acid (Nb2O5 center dot nH(2)O) and niobium phosphate (NbOPO4) sur...
Acidity modulation of the niobic acid surface, Nb2O5 center dot nH(2)O (NBO), by ion doping was purs...
The nature of different acid sites on the surface of various niobium-based catalysts has been spectr...
By dispersing a niobia phase in/on silica matrix it was possible to maintain the catalytic activity ...
The acidity properties of niobic acid (Nb2O5.H2O) and niobium phosphate (NbOPO4) surfaces have been...
Selective dehydration of different substrates, such as fructose, sucrose and inulin, to 5-hydroxymet...
The acidity properties of niobic acid (Nb2O5•nH2O) and niobium phosphate (NbOPO4) surfaces have been...
The catalytic dehydration of fructose to 5-hydroxymethylfurfural (HMF) in water was performed in the...
Catalytic fructose dehydration to HMF running in water : Nb-based catalysts as viable solid acid
Niobium oxophosphate acid catalyst (NbP) has great success in aqueous heterogeneous catalysis, in pa...
Xylose together with other pentose and hexose sugars can be dehydrated to produce interesting platfo...
Solid acid catalysts are among the most used in industrial chemical processes. The tolerance to pola...
In this work, two acidic Nb-P-Si mixed oxide gel-derived materials characterized by Nb/P molar ratio...
The lively acidic properties in water of niobium phosphate (NBP) catalyst and NBP modified samples b...
The aim of this work was to optimize the acid-catalyzed conversion of glucose into 5-hydroxymethylfu...
The catalytic properties of niobic acid (Nb2O5 center dot nH(2)O) and niobium phosphate (NbOPO4) sur...
Acidity modulation of the niobic acid surface, Nb2O5 center dot nH(2)O (NBO), by ion doping was purs...
The nature of different acid sites on the surface of various niobium-based catalysts has been spectr...
By dispersing a niobia phase in/on silica matrix it was possible to maintain the catalytic activity ...
The acidity properties of niobic acid (Nb2O5.H2O) and niobium phosphate (NbOPO4) surfaces have been...
Selective dehydration of different substrates, such as fructose, sucrose and inulin, to 5-hydroxymet...
The acidity properties of niobic acid (Nb2O5•nH2O) and niobium phosphate (NbOPO4) surfaces have been...
The catalytic dehydration of fructose to 5-hydroxymethylfurfural (HMF) in water was performed in the...
Catalytic fructose dehydration to HMF running in water : Nb-based catalysts as viable solid acid
Niobium oxophosphate acid catalyst (NbP) has great success in aqueous heterogeneous catalysis, in pa...
Xylose together with other pentose and hexose sugars can be dehydrated to produce interesting platfo...
Solid acid catalysts are among the most used in industrial chemical processes. The tolerance to pola...
In this work, two acidic Nb-P-Si mixed oxide gel-derived materials characterized by Nb/P molar ratio...
The lively acidic properties in water of niobium phosphate (NBP) catalyst and NBP modified samples b...
The aim of this work was to optimize the acid-catalyzed conversion of glucose into 5-hydroxymethylfu...