Skip to main content
U.S. Department of Energy
Office of Scientific and Technical Information

Temperature dependence of the product branching ratio of the CN + O{sub 2} reaction

Journal Article · · Journal of Physical Chemistry A: Molecules, Spectroscopy, Kinetics, Environment, amp General Theory
DOI:https://doi.org/10.1021/jp990373q· OSTI ID:351575
;  [1]
  1. North Dakota State Univ., Fargo, ND (United States). Dept. of Chemistry
The reaction of CN radicals with O{sub 2} was studied using infrared diode laser absorption spectroscopy. CO and CO{sub 2} products were detected directly, while the yield of NCO products was inferred by measuring the N{sub 2}O yield upon addition of excess NO. Experiments and kinetic modeling calculations were performed to examine the extent of secondary chemistry in this system. The following branching ratios of the CN + O{sub 2} reaction at 296 K were determined: {phi}(N+CO{sub 2}) = 0.02 {+-} 0.01 and {phi}(CO+NO) = 0.22 {+-} 0.02. The branching ratio into the CO + NO channel has a strong negative temperature dependence over the range 239--643 K.
Sponsoring Organization:
USDOE, Washington, DC (United States)
DOE Contract Number:
FG03-96ER14645
OSTI ID:
351575
Journal Information:
Journal of Physical Chemistry A: Molecules, Spectroscopy, Kinetics, Environment, amp General Theory, Journal Name: Journal of Physical Chemistry A: Molecules, Spectroscopy, Kinetics, Environment, amp General Theory Journal Issue: 19 Vol. 103; ISSN 1089-5639; ISSN JPCAFH
Country of Publication:
United States
Language:
English

Similar Records

Product branching ratio of the HCCO + NO reaction
Journal Article · Wed Jan 19 23:00:00 EST 2000 · Journal of Physical Chemistry A: Molecules, Spectroscopy, Kinetics, Environment, amp General Theory · OSTI ID:20017473

Product branching ratios of the CD + NO reaction
Journal Article · Thu Aug 25 00:00:00 EDT 1994 · Journal of Physical Chemistry; (United States) · OSTI ID:7015494

Measurement of product branching ratios of the NCO + NO reaction
Journal Article · Wed Jan 22 23:00:00 EST 1992 · Journal of Physical Chemistry · OSTI ID:555023