Title of article
OH*-chemiluminescence during autoignition of hydrogen with air in a pressurised turbulent flow reactor
Author/Authors
Schِnborn، نويسنده , , Alessandro and Sayad، نويسنده , , Parisa and Konnov، نويسنده , , Alexander A. and Klingmann، نويسنده , , Jens، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2014
Pages
16
From page
12166
To page
12181
Abstract
Autoignition of hydrogen in air was studied in a turbulent flow reactor using OH*-chemiluminescence. High-speed imaging was used to visualise the formation of autoignition kernels in the flow, and to analyse the conditions under which temporary stabilisation of the flame kernels occurred. The experiments were carried out at temperatures of 800–850 K, pressures of 0.8–1.2 MPa and an equivalence ratio of φ = 0.25. Measurements of the autoignition delays yielded values in the range of τ = 210–447 ms. The autoignition delay results indicated that, over the range of conditions studied, ignition delays reduced with decreasing pressure. This observation contradicted homogeneous gas-phase kinetic calculations, which predicted an increase in autoignition delay with decreasing pressure. If the kinetic model was altered to include surface reactions at the reactor walls, the calculations could be qualitatively reconciled with the experimental data, suggesting that wall reactions had a significant influence on autoignition delays.
Keywords
Flow reactor , Kinetic modelling , OH-chemiluminescence , autoignition , Hydrogen , surface reactions
Journal title
International Journal of Hydrogen Energy
Serial Year
2014
Journal title
International Journal of Hydrogen Energy
Record number
1869225
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