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Antonio MERCADO-CABRERA, Rosendo PEÑA-EGUILUZ, Régulo LóPEZ-CALLEJAS, Bethsabet JARAMILLO-SIERRA, Raúl VALENCIA-ALVARADO, Benjamín RODRíGUEZ-MéNDEZ, Arturo E MUÑOZ-CASTRO. Novel electrode structure in a DBD reactor applied to the degradation of phenol in aqueous solution[J]. Plasma Science and Technology, 2017, 19(7): 75501-075501. DOI: 10.1088/2058-6272/aa6715
Citation: Antonio MERCADO-CABRERA, Rosendo PEÑA-EGUILUZ, Régulo LóPEZ-CALLEJAS, Bethsabet JARAMILLO-SIERRA, Raúl VALENCIA-ALVARADO, Benjamín RODRíGUEZ-MéNDEZ, Arturo E MUÑOZ-CASTRO. Novel electrode structure in a DBD reactor applied to the degradation of phenol in aqueous solution[J]. Plasma Science and Technology, 2017, 19(7): 75501-075501. DOI: 10.1088/2058-6272/aa6715

Novel electrode structure in a DBD reactor applied to the degradation of phenol in aqueous solution

Funds: This work received financial support from CONACYT, Mexico.
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  • Phenol degradation experimental results are presented in a similar wastewater aqueous solution using a non-thermal plasma reactor in a coaxial dielectric barrier discharge. The novelty of the work is that one of the electrodes of the reactor has the shape of a hollow screw which shows an enhanced efficiency compared with a traditional smooth structure. The experimentation was carried out with gas mixtures of 90% Ar–10% O2, 80% Ar–20% O2 and 0% Ar–100% O2. After one hour of treatment the removal efficiency was 76%, 92%, and 97%, respectively, assessed with a gas chromatographic mass spectrometry technique. For both reactors used, the ozone concentration was measured. The screw electrode required less energy, for all gas mixtures, than the smooth electrode, to maintain the same ozone concentration. On the other hand, it was also observed that in both electrodes the electrical conductivity of the solution changed slightly from ~0.0115 S m-1 up to ~0.0430 S m-1 after one hour of treatment. The advantages of using the hollow screw electrode structure compared with the smooth electrode were: (1) lower typical power consumption, (2) the generation of a uniform plasma throughout the reactor benefiting the phenol degradation, (3) a relatively lower temperature of the aqueous solution during the process, and (4) the plasma generation length is larger.
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