The synergistic effect of equivalence ratio and initial temperature on laminar flame speed of syngas

Pinkun Guo, Songjie Liu, Xinyue Chang, Zhirong Wang, Chuanqing Xu, Lin Hu, Junchen Lu

Research output: Contribution to journalArticlepeer-review

9 Scopus citations

Abstract

The laminar flame speed of syngas (CO:H2 = 1:1)/air premixed gas in a wide equivalence ratio range (0.6–5) and initial temperature (298–423 K) was studied by Bunsen burner. The results show that the laminar flame speed first increases and then decreases as the equivalence ratio increasing, which is a maximum laminar flame speed at n = 2. The laminar flame speed increases exponentially with the increase of initial temperature. For different equivalent ratios, the initial temperature effects on the laminar flame speed is different. The initial temperature effects for n = 2 (the most violent point of the reaction) is lower than others. It is found that H, O and OH are affected more and more when the equivalence ratio increase. When the equivalence ratio is far from 2, the reaction path changes, and the influence of initial temperature on syngas combustion also changes. The laminar flame speed of syngas is more severely affected by H + O2 = O + OH and CO + OH = CO2 + H than others, which sensitivity coefficient is larger and change more greatly than others when the initial temperature and equivalence ratio change. Therefore, the laminar flame speed of syngas/air premixed gas is affected by the initial temperature and equivalence ratio. A new correlation is proposed to predict the laminar flame speed of syngas (CO:H2 = 1:1)/air premixed gas under the synergistic effect of equivalence ratio and initial temperature (for equivalence ratios of 0.6–5, the initial temperature is 298–423 K).

Original languageEnglish
Pages (from-to)23106-23117
Number of pages12
JournalInternational Journal of Hydrogen Energy
Volume47
Issue number55
DOIs
StatePublished - 30 Jun 2022
Externally publishedYes

Keywords

  • Equivalence ratio
  • Initial temperature
  • Laminar flame speed
  • Synergistic effect
  • Syngas

Fingerprint

Dive into the research topics of 'The synergistic effect of equivalence ratio and initial temperature on laminar flame speed of syngas'. Together they form a unique fingerprint.

Cite this