Phillips M C, Myers T L, Johnson T J, Weise D R
Opt Express. 2020 Mar 16;28(6):8680-8700. doi: 10.1364/OE.386072.
Broadband high-speed absorption spectroscopy using swept-wavelength external cavity quantum cascade lasers (ECQCLs) is applied to measure multiple pyrolysis and combustion gases in biomass burning experiments. Two broadly-tunable swept-ECQCL systems were used, with the first tuned over a range of 2089-2262 cm (4.42-4.79 µm) to measure spectra of CO, HO, and CO. The second was tuned over a range of 920-1150 cm (8.70-10.9 µm) to measure spectra of ammonia (NH), ethene (CH), and methanol (MeOH). Absorption spectra were measured continuously at a 100 Hz rate throughout the burn process, including inhomogeneous flame regions, and analyzed to determine time-resolved gas concentrations and temperature. The results provide in-situ, dynamic information regarding gas-phase species as they are generated, close to the biomass fuel source.
利用扫频外腔量子级联激光器(ECQCL)的宽带高速吸收光谱技术被应用于生物质燃烧实验中多种热解和燃烧气体的测量。使用了两个宽可调谐扫频ECQCL系统,第一个系统在2089 - 2262厘米(4.42 - 4.79微米)范围内调谐,以测量一氧化碳(CO)、羟基(HO)和二氧化碳(CO₂)的光谱。第二个系统在920 - 1150厘米(8.70 - 10.9微米)范围内调谐,以测量氨气(NH₃)、乙烯(C₂H₄)和甲醇(MeOH)的光谱。在整个燃烧过程中,包括不均匀火焰区域,以100赫兹的速率连续测量吸收光谱,并进行分析以确定时间分辨的气体浓度和温度。结果提供了关于气相物种在靠近生物质燃料源处产生时的原位动态信息。