Pulse radiolysis was used to study the kinetics of the reactions of CH 3 C(O)CH 2 O 2 radicals with NO and NO 2 at By monitoring the rate of formation and decay of NO 2 295 K. using its absorption at the rate constants 400 and 450 nm k(CH C(O)CH O ฯฉ NO) ฯญ (8 ฯฎ 3 2 2 and were de-ฯช12 ฯช12 3 ฯช1 ฯช1 2) ฯซ
Evaluating data for atmospheric models, an example: CH3O2 + NO2 = CH3O2NO2
โ Scribed by David M. Golden
- Publisher
- John Wiley and Sons
- Year
- 2005
- Tongue
- English
- Weight
- 279 KB
- Volume
- 37
- Category
- Article
- ISSN
- 0538-8066
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โฆ Synopsis
Abstract
Data in both directions for the title reaction have been statistically fit (weighted nonlinear least squares) to the different formalisms used by the NASA and IUPAC data evaluation panels. The data are well represented by either formalism. Master equation/RRKM methods were then employed in an attempt to reconcile the statistical formulae with theory. This was possible within reasonable bounds using the NASA formulation but more difficult using the IUPAC results. There are sufficient assumptions and unknowns in this attempt, such that the real โbottom lineโ is that while assuring reasonable agreement with theory is satisfying, spending much time and energy on details needed to represent pressureโdependent rate coefficients for use in atmospheric or other models of โengineeringโ problems is not terribly worthwhile. ยฉ 2005 Wiley Periodicals, Inc. Int J Chem Kinet 37: 625โ632, 2005
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