1979
DOI: 10.1016/s0082-0784(79)80060-0
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Kinetics of the NO−NH3−O2 reaction

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Cited by 44 publications
(21 citation statements)
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“…The inlet leg and outlet leg are 2 mm in diameter and 50 cm long. It is similar to the apparatus used to study the kinetics of thermal DeNO x and chlorinated hydrocarbons oxidation by Lyon et al [23][24][25]. The reactor was heated in a SK2-4-12 tubular electric resistance furnace (Shanghai Y-feng Electrical Furnace Co. Ltd, China).…”
Section: Methodsmentioning
confidence: 99%
“…The inlet leg and outlet leg are 2 mm in diameter and 50 cm long. It is similar to the apparatus used to study the kinetics of thermal DeNO x and chlorinated hydrocarbons oxidation by Lyon et al [23][24][25]. The reactor was heated in a SK2-4-12 tubular electric resistance furnace (Shanghai Y-feng Electrical Furnace Co. Ltd, China).…”
Section: Methodsmentioning
confidence: 99%
“…The early experiments of Lyon and coworkers [106][107][108] indicated that NO 2 was not formed in the Thermal DeNO x process, pointing to a small rate constant for NNH + O 2 [1]. The detection of considerable amounts of NO 2 at higher oxygen concentrations [105] prompted Miller and Glarborg [21,22] Since O 2 is present in much larger quantities than NO in the process, the introduction of the NNH + O 2 reaction allowed the NNH lifetime to be shortened.…”
Section: The Thermal Deno X Processmentioning
confidence: 99%
“…In a more extensive investigation of the reaction of the NH 3 /NO/O 2 system in a quartz flow reactor, Lyon and Benn (1978) monitored the reaction progress by measuring the O 2 , NO, and NH 3 concentration at different residence times. NH 3 oxidation was found to occur in competition with the selective reduction of NO in such a way that the NO concentration tends to approach a steady state value.…”
Section: Emergence Of Sncr Techniquementioning
confidence: 99%