Effect of the voltage waveforms and power on hydrogen and hydrogen peroxide formation in water-spray gliding arc reactor

R. Burlica, W. C. Finney, B. Locke
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引用次数: 2

Abstract

The present work deals with the formation of molecular hydrogen (H2) and hydrogen peroxide (H2O2) from liquid water sprayed into a non-thermal plasma formed by a gliding arc discharge. Previous work has demonstrated enhanced efficiency, as measured by specific energy yield, for the production of these species using a low power-pulsed plasma-gliding arc formed in a reactor with two divergent electrodes, water sprayed through a two way nozzle, and power generated by an ignition coil driven by a pulse generator. In the present work, H2 in the gas phase and H2O2 in the liquid water are determined for different values of the power injected into the reactor, as well for different waveforms (pulsed and alternating current AC), with Ar carrier. A comparison of the pulsed and AC waveforms of the voltage, for the same power injected into plasma (6 W), on the efficiency of the H2 and H2O2 production was made.
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电压波形和功率对水雾滑动电弧反应器中氢和过氧化氢形成的影响
本文研究了用滑动电弧放电将液态水喷射到非热等离子体中形成分子氢(H2)和过氧化氢(H2O2)。以前的工作已经证明了提高效率,以比能量产出来衡量,使用低功率脉冲等离子体滑动电弧在具有两个分散电极的反应堆中形成,水通过双向喷嘴喷射,由脉冲发生器驱动的点火线圈产生能量。在本工作中,以Ar为载体,测定了注入反应器的不同功率值以及不同波形(脉冲和交流交流)下气相H2和液态水H2O2的含量。比较了等离子体注入相同功率(6 W)时,脉冲电压和交流电压波形对H2和H2O2生成效率的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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