Title :
Oxidation Process of Xylene in Air Under Electron Beam Irradiation with TiO2 and Ag/TiO2
Author :
Hakoda, T. ; Kojima, T. ; Hirota, K. ; Matsumoto, K. ; Mizuno, A.
Author_Institution :
Japan Atomic Energy Agency, Takasaki
Abstract :
Oxidation of xylene and its organic irradiation byproducts in air using plasma-driven catalyst (PDC: TiO2 and Ag/TiO2) pellet layers was studied under electron beam (EB) irradiation. The layers were placed in an irradiation or a non- irradiation space in order to distinguish the oxidation of xylene/byproducts by EB irradiation, by catalytic process, and by a combination of the two. The oxidation reactions on the surface of the PDC pellets were also extracted by means of the difference in the concentrations of xylene and byproducts in the presence of the PDC layer or a non-catalyst (stainless-steel) layer with the same volume. For irradiated xylene/air mixtures, xylene was exclusively decomposed in the gas phase in an irradiation space. Introduction of the PDC layer to an irradiation space resulted in the suppression of xylene decomposition. On the other hand, production of CO2 was observed in the gas phase of an irradiation space and on the surface of the PDC pellets placed in irradiation and non-irradiation spaces. The concentration of CO2, produced in the gas phase and on the PDC pellet surface, became higher when the layer was placed in the vicinity of an irradiation space. The production of CO2 is enhanced by loading of Ag to the TiO2 pellet surface. The highest concentration of CO2 was obtained for Ag/TiO2 with Ag contents greater than 5wt%. The production of CO2 from byproducts on the PDC pellet surface was evaluated from the difference in the concentrations of xylene and byproducts between the PDC and the SUS pellet layers.
Keywords :
catalysts; electron beam effects; organic compounds; oxidation; silver; titanium compounds; TiO2Ag; catalytic process; electron beam irradiation; gas phase; organic irradiation byproducts; oxidation process; oxidation reactions; pellet layers; plasma-driven catalyst; xylene; Corona; Electron beams; Kinetic energy; Oxidation; Particle beams; Plasmas; Power engineering and energy; Production; Space technology; Surface discharges;
Conference_Titel :
Industry Applications Conference, 2007. 42nd IAS Annual Meeting. Conference Record of the 2007 IEEE
Conference_Location :
New Orleans, LA
Print_ISBN :
978-1-4244-1259-4
Electronic_ISBN :
0197-2618
DOI :
10.1109/07IAS.2007.226