Surface DBD in moist air for nitrogen fixation: a comparative study of pulsed versus amplitude-modulated AC powered discharge

Jiří Fujera, P. Hoffer, V. Prukner, P. Rotondo, G. Arora, V. Jirásek, Petr Lukes, Milan Šimek
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Abstract

Surface DBD discharge maintained in moist air in the immediate vicinity of the water surface is an effective source of reactive species for the production of plasma-activated water. In this work, we investigated the water activation process for two different DBD energization methods; i.e. using periodic HV pulses with nanosecond risetimes and amplitude-modulated HV AC. We combined UV-vis-NIR ICCD spectroscopy with electrical characteristics to determine the basic characteristics of surface DBD microfilaments. Formation of N2O5/NO2/N2O/H2O2/NO2-/NO3- species was followed and the production yields of species generated in plasma-activated water (H2O2/NO2-/NO3-) were determined in a flow-through reactor under well-defined and stable discharge conditions. Both energization methods reached comparable energy efficiencies of nitrogen fixation in the range of 1-6 g/kWh with minimal concentrations of H2O2 (10s µM). However, the AC-powered SDBD produced mainly NO3- with minimal NO2- (1/10 of NO3-), while in the case of pulsed SDBD the better-balanced NO2-/NO3- ratio was achieved.
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潮湿空气中用于固氮的表面 DBD:脉冲放电与调幅交流电放电的比较研究
在紧邻水面的潮湿空气中保持表面 DBD 放电是产生等离子活化水的有效活性物种来源。在这项工作中,我们研究了两种不同 DBD 通电方法的水活化过程,即使用纳秒级周期性高压脉冲和调幅高压交流。我们将紫外-可见-近红外 ICCD 光谱与电学特性相结合,确定了表面 DBD 微丝的基本特性。我们跟踪了 N2O5/NO2/N2O/H2O2/NO2-/NO3- 物种的形成,并在一个流过式反应器中,在明确和稳定的放电条件下,测定了等离子体活化水(H2O2/NO2-/NO3-)中生成的物种的产量。在 H2O2 浓度极低(10s µM)的情况下,两种通电方法的固氮能效相当,都在 1-6 g/kWh 的范围内。不过,交流供电的 SDBD 主要产生 NO3-,NO2-(1/10 的 NO3-)极少,而脉冲 SDBD 的 NO2-/NO3-比例更为均衡。
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