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首页> 外文期刊>Turkish journal of chemistry >Intracavity Laser Absorption Spectroscopy for Flame Diagnostics
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Intracavity Laser Absorption Spectroscopy for Flame Diagnostics

机译:腔内激光吸收光谱用于火焰诊断

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摘要

Intracavity Laser Absorption Spectroscopy (ICLAS) is one of the most sensitive techniques in absorption spectroscopy. Application of this technique to combustion diagnostics offers many important advantages. Since ICLAS is an absorption-based method, it is not limited by the quenching and predissociation effects that compromise the sensitivity of Laser Induced Fluorescence (LIF), one of the most sensitive and widespread techniques applied in combustion diagnostics. For that reason, radicals that are subject to strong collisional quenching or predissociation, such as ~1CH2 and HCO, can be measured by ICLAS with sensitivity much greater than that of LIF. For the same reason, ICLAS also possesses better sensitivity for NH and HNO. The present paper overviews the ICLAS measurements performed during the last decade in our laboratory and also presents recent results: first-time detection of the HSO radical in flames by ICLAS and application of Fiber Laser Intracavity Absorption Spectroscopy (FLICAS) based on Er-doped fiber laser for in-situ detection of ammonia and hydrogen cyanide in a low-pressure methane/air flame doped with a small amount of ammonia. Avenues for future research are discussed.
机译:腔内激光吸收光谱法(ICLAS)是吸收光谱法中最敏感的技术之一。将该技术应用于燃烧诊断具有许多重要的优点。由于ICLAS是基于吸收的方法,因此不受淬灭和预离解效应的限制,该效应会损害激光诱导荧光(LIF)的灵敏度,而激光诱导荧光(LIF)是燃烧诊断中最敏感,应用最广泛的技术之一。因此,ICLAS可以测量到发生强烈碰撞猝灭或预离解的自由基(例如〜1CH2和HCO),其灵敏度远高于LIF。出于同样的原因,ICLAS对NH和HNO的敏感性也更高。本文概述了我们实验室在过去十年中进行的ICLAS测量,并提供了最新结果:ICLAS首次检测火焰中的HSO自由基,以及基于掺Er光纤的光纤激光腔内吸收光谱法(FLICAS)的应用激光用于原位检测掺有少量氨的低压甲烷/空气火焰中的氨和氰化氢。讨论了未来研究的途径。

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