Matches in SemOpenAlex for { <https://semopenalex.org/work/W2010348549> ?p ?o ?g. }
- W2010348549 endingPage "9439" @default.
- W2010348549 startingPage "9425" @default.
- W2010348549 abstract "The thermal decomposition of ethanol and its reactions with OH and D have been studied with both shock tube experiments and ab initio transition state theory-based master equation calculations. Dissociation rate constants for ethanol have been measured at high T in reflected shock waves using OH optical absorption and high-sensitivity H-atom ARAS detection. The three dissociation processes that are dominant at high T are C2H5OH--> C2H4+H2O (A) -->CH3+CH2OH (B) -->C2H5+OH (C).The rate coefficient for reaction C was measured directly with high sensitivity at 308 nm using a multipass optical White cell. Meanwhile, H-atom ARAS measurements yield the overall rate coefficient and that for the sum of reactions B and C , since H-atoms are instantaneously formed from the decompositions of CH(2)OH and C(2)H(5) into CH(2)O + H and C(2)H(4) + H, respectively. By difference, rate constants for reaction 1 could be obtained. One potential complication is the scavenging of OH by unreacted ethanol in the OH experiments, and therefore, rate constants for OH+C2H5OH-->products (D)were measured using tert-butyl hydroperoxide (tBH) as the thermal source for OH. The present experiments can be represented by the Arrhenius expression k=(2.5+/-0.43) x 10(-11) exp(-911+/-191 K/T) cm3 molecule(-1) s(-1) over the T range 857-1297 K. For completeness, we have also measured the rate coefficient for the reaction of D atoms with ethanol D+C2H5OH-->products (E) whose H analogue is another key reaction in the combustion of ethanol. Over the T range 1054-1359 K, the rate constants from the present experiments can be represented by the Arrhenius expression, k=(3.98+/-0.76) x10(-10) exp(-4494+/-235 K/T) cm3 molecule(-1) s(-1). The high-pressure rate coefficients for reactions B and C were studied with variable reaction coordinate transition state theory employing directly determined CASPT2/cc-pvdz interaction energies. Reactions A , D , and E were studied with conventional transition state theory employing QCISD(T)/CBS energies. For the saddle point in reaction A , additional high-level corrections are evaluated. The predicted reaction exo- and endothermicities are in good agreement with the current Active Thermochemical Tables values. The transition state theory predictions for the microcanonical rate coefficients in ethanol decomposition are incorporated in master equation calculations to yield predictions for the temperature and pressure dependences of reactions A - C . With modest adjustments (<1 kcal/mol) to a few key barrier heights, the present experimental and adjusted theoretical results yield a consistent description of both the decomposition (1-3) and abstraction kinetics (4 and 5). The present results are compared with earlier experimental and theoretical work." @default.
- W2010348549 created "2016-06-24" @default.
- W2010348549 creator A5009707274 @default.
- W2010348549 creator A5014055394 @default.
- W2010348549 creator A5030482320 @default.
- W2010348549 creator A5035975028 @default.
- W2010348549 creator A5060098801 @default.
- W2010348549 creator A5064707932 @default.
- W2010348549 date "2010-08-18" @default.
- W2010348549 modified "2023-09-25" @default.
- W2010348549 title "Rate Constants for the Thermal Decomposition of Ethanol and Its Bimolecular Reactions with OH and D: Reflected Shock Tube and Theoretical Studies" @default.
- W2010348549 cites W1964118816 @default.
- W2010348549 cites W1969683453 @default.
- W2010348549 cites W1972247240 @default.
- W2010348549 cites W1974121142 @default.
- W2010348549 cites W1975702269 @default.
- W2010348549 cites W1976644981 @default.
- W2010348549 cites W1976941450 @default.
- W2010348549 cites W1977012521 @default.
- W2010348549 cites W1979084177 @default.
- W2010348549 cites W1981936878 @default.
- W2010348549 cites W1982523508 @default.
- W2010348549 cites W1989097307 @default.
- W2010348549 cites W1993077801 @default.
- W2010348549 cites W1993226721 @default.
- W2010348549 cites W1993577659 @default.
- W2010348549 cites W1994983528 @default.
- W2010348549 cites W1995294194 @default.
- W2010348549 cites W1995722997 @default.
- W2010348549 cites W1996492839 @default.
- W2010348549 cites W1998725642 @default.
- W2010348549 cites W2001770854 @default.
- W2010348549 cites W2005528617 @default.
- W2010348549 cites W2006060266 @default.
- W2010348549 cites W2010108349 @default.
- W2010348549 cites W2016756186 @default.
- W2010348549 cites W2017891266 @default.
- W2010348549 cites W2022301006 @default.
- W2010348549 cites W2027889309 @default.
- W2010348549 cites W2029433919 @default.
- W2010348549 cites W2029655924 @default.
- W2010348549 cites W2034415416 @default.
- W2010348549 cites W2035409779 @default.
- W2010348549 cites W2036894437 @default.
- W2010348549 cites W2037992725 @default.
- W2010348549 cites W2039246983 @default.
- W2010348549 cites W2039495070 @default.
- W2010348549 cites W2040195084 @default.
- W2010348549 cites W2043383667 @default.
- W2010348549 cites W2043803498 @default.
- W2010348549 cites W2046087805 @default.
- W2010348549 cites W2058401765 @default.
- W2010348549 cites W2062606596 @default.
- W2010348549 cites W2064697201 @default.
- W2010348549 cites W2067016345 @default.
- W2010348549 cites W2067435681 @default.
- W2010348549 cites W2069006374 @default.
- W2010348549 cites W2070358382 @default.
- W2010348549 cites W2071044971 @default.
- W2010348549 cites W2074099514 @default.
- W2010348549 cites W2074192895 @default.
- W2010348549 cites W2074616959 @default.
- W2010348549 cites W2075486066 @default.
- W2010348549 cites W2075730114 @default.
- W2010348549 cites W2077082565 @default.
- W2010348549 cites W2078086290 @default.
- W2010348549 cites W2078479834 @default.
- W2010348549 cites W2082794077 @default.
- W2010348549 cites W2083229371 @default.
- W2010348549 cites W2085413415 @default.
- W2010348549 cites W2085714862 @default.
- W2010348549 cites W2086715143 @default.
- W2010348549 cites W2090067667 @default.
- W2010348549 cites W2090222129 @default.
- W2010348549 cites W2091023269 @default.
- W2010348549 cites W2093173078 @default.
- W2010348549 cites W2101698639 @default.
- W2010348549 cites W2113177089 @default.
- W2010348549 cites W2119493104 @default.
- W2010348549 cites W2123007808 @default.
- W2010348549 cites W2129671275 @default.
- W2010348549 cites W2143981217 @default.
- W2010348549 cites W2143995683 @default.
- W2010348549 cites W2163746642 @default.
- W2010348549 cites W2200464060 @default.
- W2010348549 cites W2322448735 @default.
- W2010348549 cites W2465172965 @default.
- W2010348549 cites W2492112983 @default.
- W2010348549 cites W2914210707 @default.
- W2010348549 cites W2951567269 @default.
- W2010348549 cites W2951689564 @default.
- W2010348549 cites W2951697125 @default.
- W2010348549 cites W4235701496 @default.
- W2010348549 cites W4242135491 @default.
- W2010348549 doi "https://doi.org/10.1021/jp104759d" @default.
- W2010348549 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/20715882" @default.
- W2010348549 hasPublicationYear "2010" @default.
- W2010348549 type Work @default.