3. Conclusions
The approach described here can be applied to all systems of interest at both industrial, basic research and applied research levels. It goes far beyond the framework of H2/O2, H2/air, CH4/O2, CH4/air systems, and can be applied to the combustion of energetic materials (HMX, RDX, TNT, etc.), the combustion of metals (Al, Na, Mg, etc.), combustion of automotive, aeronautical and space fuels and biofuels (gasoline, diesel, biodiesel, kerosene, SPK, energetic ionic liquids), gasification (coal, biomass, waste, etc.), incineration, steam reforming of methane to produce hydrogen (SMR process), formation and emission of pollutants (NOx, VOCs, soot (PM), etc.), and in general for any process involving thermal treatment or leading to the introduction of reactive species into the medium (thermal plasma, cold plasma, thermal CVD, etc.)....
You do not have access to this resource.
Exclusive to subscribers. 97% yet to be discovered!
Already subscribed?
Log in!
Ongoing reading
Conclusions