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Strategies for Quantitative Planar Laser-Induced Fluorescence of NH Radicals in Flames

机译:火焰中NH自由基的定量平面激光诱导荧光的策略

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摘要

Laser-induced fluorescence imaging of the NH radical using excitation in the (0-0) and (1-0) vibrational bands of the A(3)Pi-X-3 Sigma(-) electronic transition is characterized in premixed NH3-air flames. Filtered detection for excitation of the (1-0) band is found to be beneficial for measurement conditions with a challenging background and/or interferences. Concentration evaluation for excitation in the (0-0) and (1-0) bands is feasible by means of fully or partially saturated fluorescence, respectively. Detection limits of a few tens of ppm for averaged data and 100 ppm on a single-shot basis was achieved for 3-cm imaging size using both excitation alternatives. Thinning and broadening of the NH layer in a turbulent flame indicate turbulence/flame chemistry coupling, which occurred at lower turbulence levels compared with hydrocarbon combustion. Fluorescence imaging of the NH flame-front marker in such flames thus provide an experimental configuration for detailed studies of turbulence/flame chemistry interactions.
机译:在预混合的NH3-空气中表征了使用A(3)Pi-X-3 Sigma(-)电子跃迁的(0-0)和(1-0)振动带激发的NH自由基的激光诱导荧光成像火焰。发现用于(1-0)频带激励的滤波检测对于具有挑战性背景和/或干扰的测量条件是有益的。分别通过完全或部分饱和的荧光来评估(0-0)和(1-0)波段中激发的浓度是可行的。使用这两种激发方案,对于3厘米成像尺寸,平均数据的检测限为几十ppm,单次检测的检测限为100 ppm。湍流火焰中NH层的变薄和变宽表明湍流/火焰化学耦合,与烃类燃烧相比,湍流/火焰化学耦合发生在较低的湍流水平。因此,此类火焰中NH火焰前标记的荧光成像可为详细研究湍流/火焰化学相互作用提供实验配置。

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