Artículo
Arrhenius parameters for the OH-initiated degradation of methyl crotonate, methyl-3,3-dimethyl acrylate, (E)-ethyl tiglate and methyl-3-butenoate over the temperature range of 288-314 K
Colomer, Juan Pablo
; Blanco, Maria Belen
; Peñeñory, Alicia Beatriz
; Barnes, Ian; Wisen, Peter; Teruel, Mariano Andres
Fecha de publicación:
26/05/2016
Editorial:
Royal Society of Chemistry
Revista:
RSC Advances
ISSN:
2046-2069
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
The relative-rate technique has been employed to obtain rate coefficients for the reactions between the OH radical and four unsaturated esters (methyl crotonate (k1), methyl-3,3-dimethyl acrylate (k2), (E)-ethyl tiglate (k3) and methyl-3-butenoate (k4)) between 288 and 314 K in 760 Torr of synthetic air. The experiments were performed in a multiple-pass environmental chamber with in situ FTIR detection of the esters and reference compounds. The rate coefficients for the reactions displayed a negative dependence with temperature and low pre-exponential factors. The following Arrhenius expressions (in units of cm3 per molecule per s) were obtained: k1 = (3.39 ± 0.78) × 10-12exp[(750 ± 159)/T], k2 = (2.95 ± 0.63) × 10-12exp[(838 ± 182)/T], k3 = (1.49 ± 0.56) × 10-12exp[(522 ± 114)/T] and k4 = (1.90 ± 1.25) × 10-12exp[(834 ± 185)/T]. The kinetic results are in agreement with a mechanism involving mainly OH radical addition to the double with the reversible formation of an OH-adduct. Atmospheric implications are discussed with particular reference to the rate coefficients obtained as a function of the temperature.
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Articulos(INFIQC)
Articulos de INST.DE INVESTIGACIONES EN FISICO- QUIMICA DE CORDOBA
Articulos de INST.DE INVESTIGACIONES EN FISICO- QUIMICA DE CORDOBA
Citación
Colomer, Juan Pablo; Blanco, Maria Belen; Peñeñory, Alicia Beatriz; Barnes, Ian; Wisen, Peter; et al.; Arrhenius parameters for the OH-initiated degradation of methyl crotonate, methyl-3,3-dimethyl acrylate, (E)-ethyl tiglate and methyl-3-butenoate over the temperature range of 288-314 K; Royal Society of Chemistry; RSC Advances; 6; 59; 26-5-2016; 53723-53729
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