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- W2138922153 abstract "The destruction of NO molecules by an Ar plasma jet in a low-pressure (0.2 Torr) reactor is investigated by means of a 3D hydrodynamic model. The density distribution of species created through molecular kinetics triggered by the collision of Ar + with NO is calculated, showing that in the case of the most abundant species a quasi-homogeneous density distribution builds up in a large part of the reactor. The conversion of NO into stable O 2 and N 2 molecules is followed under different plasma jet conditions and NO gas flows, and the effect of N 2 addition on NO destruction is studied. It is shown that in the present system the reproduction of NO molecules on the surface through surface-assisted recombination of N and O atoms becomes impossible due to the fast disappearance of N atoms in the jet's inlet vicinity." @default.
- W2138922153 created "2016-06-24" @default.
- W2138922153 creator A5072537449 @default.
- W2138922153 date "2011-02-21" @default.
- W2138922153 modified "2023-10-16" @default.
- W2138922153 title "Modelling of NO destruction in a low-pressure reactor by an Ar plasma jet: species abundances in the reactor" @default.
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- W2138922153 doi "https://doi.org/10.1088/0022-3727/44/10/105202" @default.
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