The strong non-equilibrium conditions provided by the plasma phase offer the opportunity to beat traditional thermal process energy efficiencies via preferential excitation of molecular vibrations. Simple molecular physics considerations are presented to explain potential dissociation pathways in plasma and their effect on energy efficiency. A common microwave reactor approach is evaluated experimentally with Rayleigh scattering and Fourier transform infrared spectroscopy to assess gas temperatures (exceeding 104 K) and conversion degrees (up to 30%), respectively. The results are interpreted on a basis of estimates of the plasma dynamics obtained with electron energy distribution functions calculated with a Boltzmann solver. It indicates t...
Plasma reactor technologies have the potential to enable storage of green renewable electricity into...
The input power of a CO 2 microwave plasma is modulated at kHz rate in scans of duty cycle at consta...
Plasma reactors emerge as a promising alternative to cope with some of the biggest challenges curren...
The strong non-equilibrium conditions provided by the plasma phase offer the opportunity to beat tra...
The strong non-equilibrium conditions provided by the plasma phase offer the opportunity to beat tra...
The strong non-equilibrium conditions provided by the plasma phase offer the opportunity to beat tra...
The strong non-equilibrium conditions provided by the plasma phase offer the opportunity to beat tra...
The strong non-equilibrium conditions provided by the plasma phase offer the opportunity to beat tra...
The strong non-equilibrium conditions provided by the plasma phase offer the opportunity to beat tra...
© The Royal Society of Chemistry 2018. Plasma reactor technologies have the potential to enable sto...
The input power of a CO 2 microwave plasma is modulated at kHz rate in scans of duty cycle at consta...
Plasma reactor technologies have the potential to enable storage of green renewable electricity into...
The input power of a CO 2 microwave plasma is modulated at kHz rate in scans of duty cycle at consta...
The input power of a CO 2 microwave plasma is modulated at kHz rate in scans of duty cycle at consta...
The input power of a CO 2 microwave plasma is modulated at kHz rate in scans of duty cycle at consta...
Plasma reactor technologies have the potential to enable storage of green renewable electricity into...
The input power of a CO 2 microwave plasma is modulated at kHz rate in scans of duty cycle at consta...
Plasma reactors emerge as a promising alternative to cope with some of the biggest challenges curren...
The strong non-equilibrium conditions provided by the plasma phase offer the opportunity to beat tra...
The strong non-equilibrium conditions provided by the plasma phase offer the opportunity to beat tra...
The strong non-equilibrium conditions provided by the plasma phase offer the opportunity to beat tra...
The strong non-equilibrium conditions provided by the plasma phase offer the opportunity to beat tra...
The strong non-equilibrium conditions provided by the plasma phase offer the opportunity to beat tra...
The strong non-equilibrium conditions provided by the plasma phase offer the opportunity to beat tra...
© The Royal Society of Chemistry 2018. Plasma reactor technologies have the potential to enable sto...
The input power of a CO 2 microwave plasma is modulated at kHz rate in scans of duty cycle at consta...
Plasma reactor technologies have the potential to enable storage of green renewable electricity into...
The input power of a CO 2 microwave plasma is modulated at kHz rate in scans of duty cycle at consta...
The input power of a CO 2 microwave plasma is modulated at kHz rate in scans of duty cycle at consta...
The input power of a CO 2 microwave plasma is modulated at kHz rate in scans of duty cycle at consta...
Plasma reactor technologies have the potential to enable storage of green renewable electricity into...
The input power of a CO 2 microwave plasma is modulated at kHz rate in scans of duty cycle at consta...
Plasma reactors emerge as a promising alternative to cope with some of the biggest challenges curren...