4.5 Article

Decomposition of Acetaldehyde in Atmospheric Pressure Filamentary Nitrogen Plasma

期刊

PLASMA CHEMISTRY AND PLASMA PROCESSING
卷 32, 期 5, 页码 991-1023

出版社

SPRINGER
DOI: 10.1007/s11090-012-9388-6

关键词

Dielectric barrier discharge; Acetaldehyde; Nitrogen; Plasma kinetic

资金

  1. FONER (Fond National pour l'Education et la Recherche), Burkina Faso

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The removal of 500 ppm acetaldehyde in nitrogen at 1 bar is characterized in a pulse dielectric barrier discharge generating a spatial random distribution of plasma filaments. The identification and the quantification of numerous by-products are performed. At 20 A degrees C, CH3CHO is efficiently dissociated, probably owing to quenching of N-2 metastable states. The most abundant by-products are CO, H-2, and CH4, in consistency with the three important exit channels for the quenching of the N-2(A(3)I pound (u) (+) ) state by CH3CHO proposed by Faider et al. (2011). In order of importance, other products are HCN, C2H6, CH3CN, HNCO, CO2, CH3COCH3, C2H4, C2H5CN, NH3, C2H2, and a group of nitriles and of ketones. An increase of the temperature from 20 A degrees C up to 300 A degrees C induces a strong decrease of the removal characteristic energy, but the by-products types remain unchanged. Probably the reaction of H with CH3CHO plays a role in the removal of the molecule at 300 A degrees C.

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