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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Singlet delta oxygen production in a 2D micro-discharge array in air: effect of gas residence time and discharge power
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Singlet delta oxygen production in a 2D micro-discharge array in air: effect of gas residence time and discharge power

机译:在空气中的2D微放电阵列中的速度三角洲氧气产生:气体停留时间和放电功率的影响

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The production of singlet delta oxygen (O-2(a(1)Delta(g))) is of growing interest for many applications. We report on the measurement of O-2(a(1)Delta(g)) and ozone (O-3) in a room temperature atmospheric pressure discharge in dry air. The plasma source is a 2D array of micro-discharges generated by an alternating current voltage at 20 kHz. The study focuses on the effect of gas flow through the discharge. The maximum investigated flow rate allows reducing the gas residence time in the discharge zone to half the discharge period. Results indicate that the residence time and discharge power have a major effect on the O-2(a(1)Delta(g)) production. Different O-2(a(1)Delta(g)) density dependencies on power are observed for different flow rates. Effects of collisional quenching on the as- produced and measured O-2(a(1)Delta(g)) densities are discussed. The flow rate also allows for control of the O-2(a(1)Delta(g)) to O-3 density ratio in the effluent from 0.7 to conditions of pure O-3.
机译:SINGLET DELTA氧的生产(O-2(A(1)Δ(g))对许多应用产生兴趣。 我们报告在干燥空气中的室温大气压放电中测量O-2(A(1)Δ(g))和臭氧(O-3)。 等离子体源是由20kHz的交流电压产生的2D微量放电阵列。 该研究侧重于气流通过放电的影响。 最大调查的流速允许将放电区中的气体停留时间降低到排放时段的一半。 结果表明停留时间和放电功率对O-2(A(1)Δ(g))产生的重大影响。 对于不同的流速,观察到不同的O-2(A(1)Δ(g))密度依赖性。 讨论了碰撞猝灭对制备和测量的O-2(A(1)δ(g))密度的影响。 流速还允许从0.7到纯O-3的条件下控制从流出物中的O-2(A(1)Δ(g))到O-3密度比。

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