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New prototype for the treatment of falling film liquid effluents by gliding arc discharge part I: Application to the discoloration and degradation of anthraquinonic Acid Green 25

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dc.contributor.author Abdelmalek, F
dc.contributor.author Ghezzar, MR
dc.contributor.author Saïm, N
dc.contributor.author Belhachemi, S
dc.contributor.author Addou, A
dc.date.accessioned 2019-02-11T12:51:22Z
dc.date.available 2019-02-11T12:51:22Z
dc.date.issued 2013-10-01
dc.identifier.uri http://e-biblio.univ-mosta.dz/handle/123456789/9606
dc.description.abstract Gliding arc discharge (GAD) reactors are continuously in progress in order to improve the treatment efficiency of recalcitrant compounds. However, up to now, they remain difficult to transfer to industrial applications because of some technical constraints in their design. In this study, a new efficient prototype is proposed for the treatment of gravity falling film shaped of liquid effluents. The liquid flow rate is now continuous as the tank containing the solution to be treated is replaced by an inclined plate along which flows the liquid. The various working parameters are optimized and the new prototype efficiency is tested on discolouration and degradation of the anthraquinonique Acid Green 25. The optimized values obtained are: the liquid flow rate ω = 1 L h−1, the plate tilt angle ˛ = 45◦ and the channel width = 3 mm. The rates of discolouration and degradation reach 95% and 90% respectively after 12 cycles (180 min) of plasma exposition. The GAD in the presence of humid air generates highly oxidizing radical species such as •OH with a standard potential E◦[(•OH/H2O) = 2.85 V/SHE] and its reducer agent H2O2 [E◦(H2O2/H2O) = 1.68 V/SHE. en_US
dc.publisher Chemical Engineering and Processing: Process Intensification en_US
dc.subject Gliding arc discharge treatment en_US
dc.subject Reactor model en_US
dc.subject Laminar falling film en_US
dc.subject Anthraquinonic dye AG 25 en_US
dc.title New prototype for the treatment of falling film liquid effluents by gliding arc discharge part I: Application to the discoloration and degradation of anthraquinonic Acid Green 25 en_US
dc.type Article en_US


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