Gott Ryan P, Engeling K W, Olson Joel, Franco Carolina
NASA Postdoctoral Program, Kennedy Space Center, Florida, USA.
NASA, Kennedy Space Center, Florida, USA.
Phys Chem Chem Phys. 2023 Feb 8;25(6):5130-5145. doi: 10.1039/d2cp03489a.
An in-depth study of plasma activated water (PAW) generation was conducted to link changes in power supply, electrode material, input gas, and treatment time to the resulting reaction chemistry, all while maintaining a consistent electrode geometry. These changes in chemistry can help tailor PAW for different space applications. An AC, DC, and nanosecond pulsed power supply were each used to generate PAW with stainless steel, copper, tungsten, or platinum electrodes while utilizing air, nitrogen, carbon dioxide, helium, or argon as the feed gas. Tap or deionized (DI) water was treated for 1 to 15 minutes, and the generated PAW was tested for changes in pH, conductivity, and concentration of nitrates, nitrites, and ammonium. Calculations indicated that the production of reactive nitrogen species was the leading cause of the pH and conductivity changes. The DC generated air plasma, with a voltage between 2.5-3.14 kV and currents of 85-100 mA, was able to reduce the pH of DI water to 2.88 and generate 128 ppm of nitrates. The AC supply was less effective, producing a pH of 4.22 for DI water and 5 ppm of nitrates. The pulsed supply, operating at 20% of the input power of the DC supply, lowered the pH to 3.34 and generated 26 ppm of nitrates. When a simulated Martian gas mixture of 95% CO and 5% N was used as the feed gas, 24.8 ppm and 3.82 ppm of nitrates were generated with the DC and pulsed supplies, respectively.
对等离子体活化水(PAW)的产生进行了深入研究,旨在将电源、电极材料、输入气体和处理时间的变化与由此产生的反应化学联系起来,同时保持电极几何形状一致。这些化学变化有助于为不同的空间应用定制PAW。分别使用交流、直流和纳秒脉冲电源,以不锈钢、铜、钨或铂电极产生PAW,同时使用空气、氮气、二氧化碳、氦气或氩气作为进料气体。对自来水或去离子(DI)水进行1至15分钟的处理,并对产生的PAW进行pH值、电导率以及硝酸盐、亚硝酸盐和铵浓度变化的测试。计算表明,活性氮物种的产生是pH值和电导率变化的主要原因。直流产生的空气等离子体,电压在2.5 - 3.14 kV之间,电流为85 - 100 mA,能够将DI水的pH值降至2.88,并产生128 ppm的硝酸盐。交流电源效果较差,DI水的pH值为4.22,硝酸盐含量为5 ppm。脉冲电源以直流电源输入功率的20%运行,将pH值降至3.34,并产生26 ppm的硝酸盐。当使用95% CO和5% N的模拟火星气体混合物作为进料气体时,直流和脉冲电源分别产生24.8 ppm和3.82 ppm的硝酸盐。