We report here the development of a prototype reactor for CO2 reforming of methane based on the application of corona discharges above the surface of a catalyst. The system has been designed to perform activity trials with and without plasma and with and without a heterogeneous catalyst. The catalyst can be introduced as a powder or in grains and is placed directly into the discharge zone. It is also possible to vary the distance between the active electrode and the catalyst to optimize the synergy between plasma and catalyst. The reactor was designed in such a way that it can be operated at temperatures up to 800°C, necessary for a purely catalytic process, without suffering any damage to the electrodes due to thermal expansion. The first...
A versatile reactor was developed for plasma induced dry reforming of methane at atmospheric pressur...
Dry reforming of methane (DRM) is one of the attractive methods for the utilisation of greenhouse ga...
Abstract: This study presents new insights on the effect of (sub)micrometer particle sized materials...
We report here the development of a prototype reactor for CO2 reforming of methane based on the appl...
Among the possibilities for syngas production, CO2 reforming of methane is very attractive (CH4 + CO...
International audienceOver the last two decades there has been growing research interest in the oxid...
International audienceOver the last two decades there has been growing research interest in the oxid...
This study reports the dry reforming of methane (DRM) using non-thermal plasma in a swirl-induced po...
These days, the consideration of CO2 as a feedstock has become the subject of more interest. The reu...
The growing surplus of green electricity generated by renewable energy technologies has fueled resea...
The performance of methane dry reforming in a self-triggered spark discharge reactor is evaluated in...
SSCI-VIDE:+CARE+AGFInternational audienceMethane oxidation was investigated in a pulsed dielectric b...
Dry reforming of CH4 (DRM) using a plasma-enabled catalytic process is an appealing approach for red...
© 2017 by the authors. The growing surplus of green electricity generated by renewable energy techno...
Dry reforming of methane (DRM) is a challenging process wherein methane reacts with CO2 to give syng...
A versatile reactor was developed for plasma induced dry reforming of methane at atmospheric pressur...
Dry reforming of methane (DRM) is one of the attractive methods for the utilisation of greenhouse ga...
Abstract: This study presents new insights on the effect of (sub)micrometer particle sized materials...
We report here the development of a prototype reactor for CO2 reforming of methane based on the appl...
Among the possibilities for syngas production, CO2 reforming of methane is very attractive (CH4 + CO...
International audienceOver the last two decades there has been growing research interest in the oxid...
International audienceOver the last two decades there has been growing research interest in the oxid...
This study reports the dry reforming of methane (DRM) using non-thermal plasma in a swirl-induced po...
These days, the consideration of CO2 as a feedstock has become the subject of more interest. The reu...
The growing surplus of green electricity generated by renewable energy technologies has fueled resea...
The performance of methane dry reforming in a self-triggered spark discharge reactor is evaluated in...
SSCI-VIDE:+CARE+AGFInternational audienceMethane oxidation was investigated in a pulsed dielectric b...
Dry reforming of CH4 (DRM) using a plasma-enabled catalytic process is an appealing approach for red...
© 2017 by the authors. The growing surplus of green electricity generated by renewable energy techno...
Dry reforming of methane (DRM) is a challenging process wherein methane reacts with CO2 to give syng...
A versatile reactor was developed for plasma induced dry reforming of methane at atmospheric pressur...
Dry reforming of methane (DRM) is one of the attractive methods for the utilisation of greenhouse ga...
Abstract: This study presents new insights on the effect of (sub)micrometer particle sized materials...