Cano Ardila Fabian E, Nagaraju Sharath, Tranter Robert S, Garcia Gustavo A, Desclaux Anthony, Roque Ccacya Anthony, Chaumeix Nabiha, Comandini Andrea
CNRS-INSIS, I.C.A.R.E., 1C Avenue de la recherche scientifique, 45071 Orléans cedex 2, France.
Chemical Sciences and Engineering Department, Argonne National Laboratory, 9700 S. Cass Avenue, Lemont, Illinois 60439, USA.
Analyst. 2024 Feb 26;149(5):1586-1596. doi: 10.1039/d3an00819c.
The signal levels observed from mass spectrometers coupled by molecular beam sampling to shock tubes are impacted by dynamic pressures in the spectrometer due to rapid pressure changes in the shock tube. Accounting for the impact of the pressure changes is essential if absolute concentrations of species are to be measured. Obtaining such a correction for spectrometers operated with vacuum ultra violet photoionization has been challenging. We present here a new external calibration method which uses VUV-photoionization of CO to develop time-dependent corrections to species concentration/time profiles from which kinetic data can be extracted. The experiments were performed with the ICARE-HRRST (high repetition rate shock tube) at the DESIRS beamline of synchrotron SOLEIL. The calibration experiments were performed at temperatures and pressures behind reflected shock waves of 1376 ± 12 K and 6.6 ± 0.1 bar, respectively. Pyrolytic experiments with two aromatic species, toluene ( = 1362 ± 22 K, = 6.6 ± 0.2 bar) and ethylbenzene ( = 1327 ± 18 K, = 6.7 ± 0.2 bar), are analyzed to test the method. Time dependent concentrations for molecular and radical species were corrected with the new method. The resulting signals were compared with chemical kinetic simulations using a recent mechanism for pyrolytic formation of polycyclic aromatic hydrocarbons. Excellent agreement was obtained between the experimental data and simulations, without adjustment of the model, demonstrating the validity of the external calibration method.
通过分子束采样与激波管耦合的质谱仪所观测到的信号水平,会受到激波管中快速压力变化导致的质谱仪动态压力的影响。如果要测量物种的绝对浓度,考虑压力变化的影响至关重要。对于采用真空紫外光电离操作的质谱仪而言,获得这样的校正一直具有挑战性。我们在此提出一种新的外部校准方法,该方法利用一氧化碳的真空紫外光电离来对物种浓度/时间曲线进行随时间变化的校正,从中可以提取动力学数据。实验是在同步加速器SOLEIL的DESIRS光束线的ICARE-HRRST(高重复率激波管)上进行的。校准实验分别在反射激波后的温度和压力为1376±12 K和6.6±0.1 bar的条件下进行。对两种芳烃甲苯( = 1362±22 K, = 6.6±0.2 bar)和乙苯( = 1327±18 K, = 6.7±0.2 bar)的热解实验进行了分析,以测试该方法。用新方法对分子和自由基物种的随时间变化的浓度进行了校正。将所得信号与使用最近的多环芳烃热解形成机理进行的化学动力学模拟结果进行了比较。在未对模型进行调整的情况下,实验数据与模拟结果取得了极佳的一致性,证明了外部校准方法的有效性。