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Laser induced fluorescence spectrum analysis of OH from photo-dissociation of water in gas phase

机译:气相中水的光解离产生的OH的激光诱导荧光光谱分析

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The OH can be generated from photo-dissociation of water in the gas phase, and the generated OH has served in tagging velocimetry using the time-flight method. The hydroxyl tagging mechanism has the advantages of non-seeding, kindly flow following character, but its application in the reaction region is limited for the fluorescence interference from nascent OH. In this paper, we explored the laser induced fluorescence spectrum of OH both from burning and photo-dissociation. A photo-dissociation laser induced fluorescence (PD-LIF) system with optical multichannel analysis instrument (OMA) for spectrum analysis was developed. Based on multichannel mechanism, the LIF spectrum of OH from photo-dissociation and burning was acquired simultaneously. The temporal spectrum profiles of dissociation OH both in flame and air were taken by varying the pump-probe delay. The normalized emission spectrum in flame showed a process of rotational relaxation while in air the spectrum was almost not changed. The fluorescence intensity was precisely proportional to the base states population, so we can get certain states that the OH from dissociation was predominant from the fluorescence intensity ratio of OH. This result can be further utilized for hydroxyl tagging velocimetry technology (HTV) which was less affected by burning OH.
机译:OH可以由气相中水的光解离生成,并且生成的OH已使用时间飞行方法用于标记测速。羟基标记机理具有非播种,亲和流动性的优点,但是由于来自新生的OH的荧光干扰,其在反应区域中的应用受到限制。在本文中,我们从燃烧和光解离两方面探讨了激光诱导的OH荧光光谱。开发了具有光学多通道分析仪(OMA)的光解离激光诱导荧光(PD-LIF)系统,用于光谱分析。基于多通道机理,同时获得了光解和燃烧过程中OH的LIF光谱。通过改变泵浦探测延迟来获取火焰和空气中离解OH的时间谱图。火焰中的归一化发射光谱显示出旋转弛豫的过程,而在空气中,光谱几乎不变。荧光强度正好与基态种群成正比,因此我们可以从OH的荧光强度比率中得出某些状态,即离解的OH占主导地位。该结果可进一步用于羟基标记测速技术(HTV),该技术受OH燃烧的影响较小。

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