Steam reforming of hydrocarbons is a mature technology and its implementation on other substrates such as bio-ethanol appears as a ready opportunity to produce H2 from renewable sources. The Low Temperature Ethanol Steam Reforming (LT-ESR, 300–500 °C) could be a really efficient technology from the energetic point of view. However, deactivation by coke deposition remains the biggest issue, due to inefficient carbon gasification by steam in such low temperature range. We demonstrated the feasibility of the process at low temperature taking into account both activity and deactivation issues. The attention was focused on the addition of basic promoters and on the development of an unconventional preparation procedure, in comparison with a trad...
The urea hydrolysis method allowed to prepare well-crystallized Ni-Co-Zn-Al Layered Double Hydroxide...
Differently supported Ni-based catalysts, with variable metal loading, have been synthesized by mean...
Concept A series of Ni-based catalysts supported on TiO2, SiO2 and ZrO2 (10 wt% Ni) were prepared b...
Steam reforming of hydrocarbons is a mature technology and its implementation on other substrates su...
Steam reforming of hydrocarbons is a mature technology and its implementation on other substrates su...
A set of Ni catalysts supported over ZrO2 for the steam reforming of ethanol were prepared by two di...
Flame Spray Pyrolysis (FSP) is a one step high temperature synthesis able to impart strong metal-sup...
Ni and Co-based catalysts represent the most attractive catalysts for the production of hydrogen by ...
SiO2 and ZrO2 supported Ni catalysts were prepared for the steam reforming of ethanol. The catalytic...
Ethanol steam reforming has been investigated in the low temperature range, focusing not only on H2 ...
Introduction Among the methods to produce H2, Steam Reforming (SR) is one of the most common and fea...
The production of \u201cbio-hydrogen\u201d is an interesting alternative with respect the traditiona...
An innovative flame pyrolysis method was employed for the preparation of Ni-based catalysts for the ...
SiO2 and ZrO2 supported Ni catalysts were prepared for use in the steam reforming of ethanol. The ca...
This project deals with a different use of ethanol deriving from biomass. The aim is to produce hydr...
The urea hydrolysis method allowed to prepare well-crystallized Ni-Co-Zn-Al Layered Double Hydroxide...
Differently supported Ni-based catalysts, with variable metal loading, have been synthesized by mean...
Concept A series of Ni-based catalysts supported on TiO2, SiO2 and ZrO2 (10 wt% Ni) were prepared b...
Steam reforming of hydrocarbons is a mature technology and its implementation on other substrates su...
Steam reforming of hydrocarbons is a mature technology and its implementation on other substrates su...
A set of Ni catalysts supported over ZrO2 for the steam reforming of ethanol were prepared by two di...
Flame Spray Pyrolysis (FSP) is a one step high temperature synthesis able to impart strong metal-sup...
Ni and Co-based catalysts represent the most attractive catalysts for the production of hydrogen by ...
SiO2 and ZrO2 supported Ni catalysts were prepared for the steam reforming of ethanol. The catalytic...
Ethanol steam reforming has been investigated in the low temperature range, focusing not only on H2 ...
Introduction Among the methods to produce H2, Steam Reforming (SR) is one of the most common and fea...
The production of \u201cbio-hydrogen\u201d is an interesting alternative with respect the traditiona...
An innovative flame pyrolysis method was employed for the preparation of Ni-based catalysts for the ...
SiO2 and ZrO2 supported Ni catalysts were prepared for use in the steam reforming of ethanol. The ca...
This project deals with a different use of ethanol deriving from biomass. The aim is to produce hydr...
The urea hydrolysis method allowed to prepare well-crystallized Ni-Co-Zn-Al Layered Double Hydroxide...
Differently supported Ni-based catalysts, with variable metal loading, have been synthesized by mean...
Concept A series of Ni-based catalysts supported on TiO2, SiO2 and ZrO2 (10 wt% Ni) were prepared b...