Investigation of operating parameters on CO2 splitting by dielectric barrier discharge plasma

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Abstract

Experiments of CO2 splitting by dielectric barrier discharge (DBD) plasma were carried out, and the influence of CO2 flow rate, plasma power, discharge voltage, discharge frequency on CO2 conversion and process energy efficiency were investigated. It was shown that the absolute quantity of CO2 decomposed was only proportional to the amount of conductive electrons across the discharge gap, and the electron amount was proportional to the discharge power; the energy efficiency of CO2 conversion was almost a constant at a lower level, which was limited by CO2 inherent discharge character that determined a constant gap electric field strength. This was the main reason why CO2 conversion rate decreased as the CO2 flow rate increase and process energy efficiency was decreased a little as applied frequency increased. Therefore, one can improve the CO2 conversion by less feed flow rate or larger discharge power in DBD plasma, but the energy efficiency is difficult to improve.

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Chen, P., Shen, J., Ran, T., Yang, T., & Yin, Y. (2017). Investigation of operating parameters on CO2 splitting by dielectric barrier discharge plasma. Plasma Science and Technology, 19(12). https://doi.org/10.1088/2058-6272/aa8903

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