This work describes the theoretical basis and implementation of the measurement of vibrational (T vib) and rotational (T rot) temperatures in CH4 by fitting spontaneous Raman scattering spectra in the Pentad region. This method could be applied for thermal equilibrium temperature measurements applications, e.g. in combustion, or vibrational-rotational non-equilibrium applications, such as in plasma chemistry. The method of calculating these temperatures is validated against known temperature thermal equilibrium spectra up to 860 K from published data, giving an estimated relative error of 10%. This demonstrates that both the calculated stick spectrum and the algorithm to determine T vib and T rot for CH4 is robust to 860 K, but we expect it is valid to 1500 K. Additionally, a number of non-equilibrium spectra generated with a pulsed microwave plasma are fitted to find T vib and T rot, further demonstrating the applicability of this method in fitting non-equilibrium spectra.

VL - 236 U1 -MaSF

U2 -NFC

U5 - 819f63a1fed50e90b0d92e9c7654f87e ER - TY - RPRT T1 - Chemiluminescence as a diagnostic tool in CO2 microwave plasma Y1 - 2019 A1 - Peeters, F. A1 - Hendrickx, H. J. L. A1 - van de Steeg, A. W. A1 - Righart, T. W. H. A1 - Wolf, A. J. A1 - G. J. van Rooij A1 - Bongers, W. A. A1 - M. C. M. van de Sanden JF - ISPC 2019, 24th International Symposium on Plasma Chemistry CY - Naples, Italy UR - https://www.ispc-conference.org/ispcproc/ispc24/318.pdf N1 - 2019/06/14 U1 -MaSF

U2 -PSFD

U5 - 0eb58b704f67fbdd5c2e8fef4ec2b74c ER -