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Year 2015
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Hydrogen production from ethanol In nitrogen microwave plasma At atmospheric pressure
PublicationHydrogen seems to be one of the most promising alternative energy sources. It is a renewable fuel as it could be produced from e.g. waste or bio-ethanol. Furthermore hydrogen is compatible with fuel cells and is environmentally clean. In contrast to conventional methods of hydrogen production such as water electrolysis or coal gasification we propose a method based on atmospheric pressure microwave plasma. In this paper we present...
Year 2014
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Application of atmospheric pressure microwave plasma source for hydrogen production from ethanol
PublicationIn contrast to conventional technologies of hydrogen production like water electrolysis or coal gasification we propose a method based on the atmospheric pressure microwave plasma. In this paper we present results of the experimental investigations of the hydrogen production from ethanol in the atmospheric pressure plasma generated in waveguidesupplied cylindrical type nozzleless microwave (915 MHz and 2.45 GHz) plasma source (MPS)....
Year 2012
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Spectroscopic study of atmospheric pressure 915 MHz microwave plasma at high argon flow rate
Publication -
Spectroscopic study of atmospheric pressure 915 MHz microwave plasma at high argon flow rate
PublicationIn this paper results of optical emission spectroscopic (OES) study of atmospheric pressure microwave 915 MHz argon plasma are presented. The plasma was generated in microwave plasma source (MPS) cavity- resonant type. The aim of research was determination of electron excitation temperature Texc gas temperature Tg and electron number density ne. All experimental tests were performed with a gas flow rate of 100 and 200 l/min and...
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SPEKTROSKOPOWE BADANIA WYŁADOWANIA MIKROFALOWEGO W ŹRÓDLE PLAZMY TYPU KOMORA REZONANSOWA ZASILANA FALOWODOWO
PublicationW pracy przedstawiono wyniki spektroskopowych badań wyładowania mikrofalowego (2,45 GHz) pod ciśnieniem atmosferycznym, generowanego w źródle plazmy typu komora rezonansowa. Gazami roboczymi były: argon, azot oraz metan, a także mieszaniny argon/metan oraz azot/metan. Natężenie przepływu gazu roboczego zmieniano w zakresie od 50 do 100 l/min, natomiast moc mikrofal absorbowanych przez wyładowanie wynosiła od 300 do 4000 W. Zmierzone...
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