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首页> 外文期刊>Plasma processes and polymers >NO_x synthesis by atmospheric‐pressure N_2/O_2 filamentary DBD plasma over water: Physicochemical mechanisms of plasma–liquid interactions
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NO_x synthesis by atmospheric‐pressure N_2/O_2 filamentary DBD plasma over water: Physicochemical mechanisms of plasma–liquid interactions

机译:NO_X通过大气压N_2 / O_2丝状DBD等离子体在水中的影响:血浆 - 液体相互作用的物理化学机制

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摘要

In this study, an atmospheric-pressure filamentary dielectric barrier discharge plasma is produced over a deionized (DI) water surface to study the physicochemical mechanisms of plasma-liquid surface interactions for NOx synthesis. The gas-phase plasma diagnostics are performed using optical emission spectroscopy, Fourier-transform infrared spectroscopy, and by recording voltage-current curves, and liquid-phase species are analyzed using ion chromatography and UV-visible spectrophotometer. The investigations indicate that the reaction pathways for reactive oxygen and nitrogen species (H2O2, NO 2 -, N O 3 -) formation in DI water depend on different experimental conditions. It is observed that the conversion of nitrites into nitrates is significantly influenced by reactive oxygen species. The energy yield for the total amount of NOx synthesized ranges from 1.3 x 10(-4) to 3.4 x 10(-3) mol/MJ.
机译:在该研究中,在去离子(DI)水表面上产生大气压丝状介质阻挡排水等离子体,以研究NOx合成的等离子体液面相互作用的物理化学机制。使用光发射光谱,傅里叶变换红外光谱和通过记录电压电流曲线进行气相等离子体诊断,并使用离子色谱和UV可见分光光度计分析液相物质。该研究表明,在DI水中的反应性氧和氮物质(H 2 O 2,NO 2 - ,N O 3 - )形成的反应途径取决于不同的实验条件。观察到,亚硝酸盐将硝酸盐转化为反应性氧物质的显着影响。 NOx总量的能量产率为1.3×10(-4)至3.4×10(-3)mol / mj。

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