2009Plasma Sources Science and TechnologyOpen access

Atmospheric pressure glow discharge plasma in air at frequency 50 Hz

A. A. Garamoon, Doaa M. El-Zeer

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Abstract

Homogeneous atmospheric pressure discharge using a dielectric barrier discharge in air at 50 Hz was investigated. Porous alumina ceramic sheets were used as a dielectric barrier. In this paper we compare the filamentary discharge initiated by using glass sheets as a dielectric and the glow discharge obtained by the porous alumina sheets as a dielectric. Generally, the discharge in a dielectric barrier arrangement consists of a large number of filaments. Using porous alumina sheets Al 2 O 3 , an atmospheric pressure glow discharge (APGD) plasma has been obtained. This APGD discharge is characterized by a homogeneous profile of long lifetime (∼5 ms) and the current is one pulse per half cycle of the power supply. The electrical measurements and the emission spectrum confirm that the discharge has been formed in the glow mode.

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Homogeneous atmospheric pressure discharge using a dielectric barrier discharge in air at 50 Hz was investigated. Porous alumina ceramic sheets were used as a dielectric barrier. In this paper we compare the filamentary discharge initiated by using glass sheets as a dielectric and the glow discharge obtained by the porous alumina sheets as a dielectric. Generally, the discharge in a dielectric barrier arrangement consists of a large number of filaments. Using porous alumina sheets Al 2 O 3 , an atmospheric pressure glow discharge (APGD) plasma has been obtained. This APGD discharge is characterized by a homogeneous profile of long lifetime (∼5 ms) and the current is one pulse per half cycle of the power supply. The electrical measurements and the emission spectrum confirm that the discharge has been formed in the glow mode.

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Available abstract

Homogeneous atmospheric pressure discharge using a dielectric barrier discharge in air at 50 Hz was investigated. Porous alumina ceramic sheets were used as a dielectric barrier. In this paper we compare the filamentary discharge initiated by using glass sheets as a dielectric and the glow discharge obtained by the porous alumina sheets as a dielectric. Generally, the discharge in a dielectric barrier arrangement consists of a large number of filaments. Using porous alumina sheets Al 2 O 3 , an atmospheric pressure glow discharge (APGD) plasma has been obtained. This APGD discharge is characterized by a homogeneous profile of long lifetime (∼5 ms) and the current is one pulse per half cycle of the power supply. The electrical measurements and the emission spectrum confirm that the discharge has been formed in the glow mode.

Key concepts: Dielectric barrier discharge, Atmospheric pressure, Glow discharge, Dielectric, Materials science, Homogeneous, Plasma, Porosity

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