Synchronic measurements of temperatures and concentrations of OH, NH, and NO in flames based on broadband ultraviolet absorption spectroscopy

Synchronic measurements of temperatures and concentrations of OH, NH, and NO in flames based on broadband ultraviolet absorption spectroscopy
复制标题

基于宽带紫外吸收光谱同步测量火焰中 OH、NH 和 NO 的温度和浓度

DOI:
10.7498/aps.71.20220208
复制
发表时间:
2022
期刊:
Acta Physica Sinica, Chinese Physical Society and Institute of Physics, Chinese Academy of Sciences
影响因子:
--
通讯作者:
Yanjun Du
Yanjun Du
中科院分区:
其他
文献类型:
--
作者:
Xinyu Yang;Zhimin Peng;Yanjun Ding;Yanjun Du

文献摘要

参考文献

相似文献

Temperature is an important parameter influencing the combustion reaction path and rate and determining the combustion and energy exchange efficiency. The OH, NH, NO and other species are involved in the key elementary reactions of combustion and determine the generation of NOx pollutants. Therefore, temperature and concentration measurements of OH, NH, and NO are of great significance for combustion diagnostics and research on reaction or emission mechanisms. In this work, a measurement system with high spatial resolution based on broadband ultraviolet absorption spectroscopy is established to realize simultaneous measurements of the temperature and concentrations of OH, NH, and NO in flames. Low detection limits of these three species are achieved by using the established measurement method. The 1σ detection limit of NH is 1.8 ppb·m (1560 K), which is realized for the first time in atmospheric-pressure flames using absorption spectroscopy. The 1σ detection limits of OH and NO are 60 ppb·m (1590 K) and 1 ppm·m (1380 K), respectively, which are obviously better than the existing results obtained by using infrared laser absorption spectroscopy. Then, the distributions of temperatures and concentrations of OH, NO and NH are acquired at various heights in an atmospheric-pressure NH3/CH4/air premixed flat flame with a high spatial resolution of nearly 0.1 mm. The broadband absorption spectra of OH and NH are acquired simultaneously inside the flame front, and the spectra of OH and NO are acquired simultaneously above the flame front. Inside or near the flame front, the temperatures deduced from the spectra of OH, NH, and NO are consistent, verifying the ability of these three species to be used to measure temperature. In addition, OH, NH, and NO are found to be suitable for different regions in combustion. The OH absorption is suitable for the post-combustion region with temperatures higher than 1000 K, the NH absorption can be used to acquire the temperature inside the flame front in complex combustion, and the NO absorption was able to provide the temperature in the region before or outside combustion at lower temperatures. Additionally, the experimental temperature and concentration profiles are in good agreement with the computational fluid dynamics predictions based on the mechanism, exhibiting the accuracy of the simultaneous temperature and concentration measurements by using broadband ultraviolet absorption spectra. Moreover, the differences in temperature and OH concentration between experiments and simulations indicate that the carbon sub-mechanism in the mechanism given by Okafor et al. [Okafor E C, Naito Y, Colson S, Ichikawa A, Kudo T, Hayakawa A, Kobayashi H 2018 Combust. Flame 187 185 should be further improved for more accurate predictions of NH3/CH4 combustion.
DOI: 10.1016/j.fuel.2016.06.040
发表时间: 2016-10
期刊: Fuel
影响因子: 7.4
作者:
U. Azimov;N. Kawahara;E. Tomita
通讯作者: U. Azimov;N. Kawahara;E. Tomita
DOI: 10.1177/0003702821990445
发表时间: 2021-09
影响因子: 3.5
作者:
Weng W;Li S;Aldén M;Li Z
通讯作者: Li Z
DOI: 10.1016/j.fuel.2018.09.131
发表时间: 2019-02
期刊: Fuel
影响因子: 7.4
作者:
Shangpeng Li;Shanshan Zhang;Hua Zhou;Zhuyin Ren
通讯作者: Shangpeng Li;Shanshan Zhang;Hua Zhou;Zhuyin Ren
DOI: 10.1016/j.ijhydene.2021.03.210
发表时间: 2021-04
影响因子: 7.2
作者:
Meng Zhang;Zhenhua An;Liang Wang;Xutao Wei;Bieerlan Jianayihan;Jinhua Wang;Zuo-hua Huang;H. Tan
通讯作者: Meng Zhang;Zhenhua An;Liang Wang;Xutao Wei;Bieerlan Jianayihan;Jinhua Wang;Zuo-hua Huang;H. Tan
s 偏振太赫兹入射的可调谐宽带角度选择性
DOI: 10.1007/s00339-021-04279-1
发表时间: 2021-01
影响因子: 2.7
作者:
Yuan Gao;Zhongbo Zhu;Bin Zhang;Jiangtao Huangfu;Lixin Ran;Dexin Ye
通讯作者: Dexin Ye