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Liquid-phase reactions induced by atmospheric pressure glow discharge with liquid electrode

机译:用液态电极通过大气压辉光放电诱导的液相反应

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We experimentally investigated some of the initial reactions in a liquid induced by electron or positive-ion irradiation from an atmospheric-pressure dc glow discharge in contact with the liquid. We used an H-shaped glass reactor to observe the effects of electron irradiation and positive-ion irradiation on the liquid-phase reaction separately and simultaneously. Aqueous solutions of NaCl, AgNO_3, HAuCl_4, and FeCl_2 are used as the electrolyte. Solutions of AgNO_3 and HAuCl_4 are used for the generation of Ag and Au nanoparticles, respectively. Solution of FeCl_2 is used for the generation of ferromagnetic particles. Experimental results showed that electron irradiation of the liquid surface generates OH~- in water and that positive-ion irradiation of the liquid surface generates H~+ in water even without the dissolution of gas-phase nitrogen oxide. A possible reaction process is qualitatively discussed. We also showed that the control of reductive and oxidative environment in the liquid is possible not only by the gas composition for the plasma generation but also by the liquid composition.
机译:我们通过与液体接触的大气压DC辉光放电,通过实验研究由电子或正离子照射引起的液体中的一些初始反应。我们使用H形玻璃反应器分别且同时观察电子照射和正离子照射对液相反应的影响。 NaCl,AgNO_3,HauCl_4和FECL_2的水溶液用作电解质。 AgNO_3和Haucl_4的溶液分别用于产生Ag和Au纳米颗粒的产生。 FECL_2的溶液用于产生铁磁性颗粒。实验结果表明,液体表面的电子照射产生OH〜 - 在水中,即使在不溶解气相氮氧化物的情况下,液体表面的正离子照射也在水中产生H〜+。质量讨论了可能的反应过程。我们还表明,液体中的还原和氧化环境的控制不仅可以通过用于等离子体产生的气体组合物,而且可以通过液体组合物来控制。

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