Vibrational excitation potentially enhances the energy efficiency of plasma dissociation of stable molecules and may open new routes for energy storage and process electrification. Electron, vibrational and rotational temperatures were measured by in situ Thomson and Raman scattering in order to assess the opportunities and limitations of the essential vibration-translation non-equilibria in N-2, CO2 and CH4 plasma. Electron temperatures of 1.1-2.8 eV were measured in N-2 and CH4. These are used to confirm predominant energy transfer to vibrations after an initial phase of significant electronic excitation and ionization. The vibrational temperatures initially exceed rotational temperatures by almost 8000 K in N-2, by 900 K in CO2, and by 3...
International audienceThis work explores the effect of nitrogen addition on CO2 dissociation under v...
International audienceThis work explores the effect of nitrogen addition on CO2 dissociation under v...
International audienceThis work explores the effect of nitrogen addition on CO2 dissociation under v...
Vibrational excitation potentially enhances the energy efficiency of plasma dissociation of stable m...
Vibrational excitation potentially enhances the energy efficiency of plasma dissociation of stable m...
Vibrational excitation potentially enhances the energy efficiency of plasma dissociation of stable m...
Vibrational excitation potentially enhances the energy efficiency of plasma dissociation of stable m...
Vibrational excitation represents an efficient channel to drive the dissociation of CO2 in a no...
Vibrational excitation represents an efficient channel to drive the dissociation of CO2 in a non-the...
The strong non-equilibrium conditions provided by the plasma phase offer the opportunity to beat tra...
Vibrational excitation represents an efficient channel to drive the dissociation of CO2 in a non-the...
Vibrational excitation represents an efficient channel to drive the dissociation of CO2 in a non-the...
This work investigates energy transfers between electrons, vibrational and translational degrees of ...
Reaction kinetics study of the vibrational-to-translational temperature ratio of CO2, a crucial vari...
Plasma is gaining increasing interest for N2 fixation, being a flexible, electricity-driven alternat...
International audienceThis work explores the effect of nitrogen addition on CO2 dissociation under v...
International audienceThis work explores the effect of nitrogen addition on CO2 dissociation under v...
International audienceThis work explores the effect of nitrogen addition on CO2 dissociation under v...
Vibrational excitation potentially enhances the energy efficiency of plasma dissociation of stable m...
Vibrational excitation potentially enhances the energy efficiency of plasma dissociation of stable m...
Vibrational excitation potentially enhances the energy efficiency of plasma dissociation of stable m...
Vibrational excitation potentially enhances the energy efficiency of plasma dissociation of stable m...
Vibrational excitation represents an efficient channel to drive the dissociation of CO2 in a no...
Vibrational excitation represents an efficient channel to drive the dissociation of CO2 in a non-the...
The strong non-equilibrium conditions provided by the plasma phase offer the opportunity to beat tra...
Vibrational excitation represents an efficient channel to drive the dissociation of CO2 in a non-the...
Vibrational excitation represents an efficient channel to drive the dissociation of CO2 in a non-the...
This work investigates energy transfers between electrons, vibrational and translational degrees of ...
Reaction kinetics study of the vibrational-to-translational temperature ratio of CO2, a crucial vari...
Plasma is gaining increasing interest for N2 fixation, being a flexible, electricity-driven alternat...
International audienceThis work explores the effect of nitrogen addition on CO2 dissociation under v...
International audienceThis work explores the effect of nitrogen addition on CO2 dissociation under v...
International audienceThis work explores the effect of nitrogen addition on CO2 dissociation under v...