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Measurements of water molecule density by tunable diode laser absorption spectroscopy in dielectric barrier discharges with gas-water interface

机译:通过可调谐二极管激光吸收光谱法在具有气-水界面的介电势垒放电中测量水分子密度

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We measured water molecule (H2O) density by tunable diode-laser absorption spectroscopy (TDLAS) for applications in dielectric barrier discharges (DBDs) with a gas-water interface. First, the effects of water temperature and presence of gas flow were tested using a Petri dish filled with water and a gas injection nozzle. Second, the TDLAS system was applied to the measurements of H2O density in two types of DBDs; one was a normal (non-inverted) type with a dielectric-covered electrode above a water-filled counter electrode and the other was an inverted type with a water-suspending mesh electrode above a dielectric-covered counter electrode. The H2O density in the normal DBD was close to the density estimated from the saturated vapor pressure, whereas the density in the inverted DBD was about half of that in the former type. The difference is attributed to the upward gas flow in the latter type, that pushes the water molecules up towards the gas-water interface. (C) 2018 The Japan Society of Applied Physics
机译:我们通过可调谐二极管激光吸收光谱法(TDLAS)测量了水分子(H2O)的密度,以用于具有气-水界面的介电势垒放电(DBD)。首先,使用装满水的陪替氏培养皿和气体喷嘴测试水温和气流存在的影响。其次,将TDLAS系统应用于两种类型的DBD中H2O密度的测量。一种是普通的(非倒置)型,在充满水的对电极上方有一个被电介质覆盖的电极,另一种是倒置型的,在被电介质覆盖的对电极上方有一个水悬浮的网状电极。普通DBD中的H2O密度接近于根据饱和蒸气压估算的密度,而倒置DBD中的H2O密度约为前者的一半。差异归因于后一种类型的向上气流,该向上气流将水分子推向气-水界面。 (C)2018日本应用物理学会

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