CS + O

Gaz phase reaction (type: Bimolecular reactions)

     
 
Lilenfeld, H. V. et al (1977)    T(K) = 150-300 
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Channels
CS + O → S + CO
T(K): 150-300
Formula: Modified Arrhenius equation
Δ rH0 = -366.613
Δ rH298 = -361.085
2010-10-31
k( )
cm3s-1
Details
0.00e+0 CS + O → S + CO
T(K) = 150-300
α = 2.60E-10
β = 0.00E+0
γ = 7.60E+2
F 0 = 1.3
g = 0
Type uncert: lognormal
Method: Measurements
Reference
Origin: Bibliography
Authors: Lilenfeld, H. V. et al
Volume,Page: 67, 3991
Year: 1977
DOI: -
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Atkinson, R. et al (2004)    T(K) = 150-300 
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Channels
CS + O → S + CO
T(K): 150-300
Formula: Modified Arrhenius equation
Δ rH0 = -366.613
Δ rH298 = -361.085
2012-08-01
k( )
cm3s-1
Details
0.00e+0 CS + O → S + CO
T(K) = 150-300
α = 2.70E-10
β = 0.00E+0
γ = 7.60E+2
F 0 = 1.12
g = 125
Type uncert: lognormal
Method: Reviews and Evaluations
Reference
Origin: Bibliography
Authors: Atkinson, R. et al
Volume,Page: 4,1461-1738
Year: 2004
DOI: DOI
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Other database : OSU    T(K) = 10-280 
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Channels
CS + O → S + CO
T(K): 10-280
Formula: Modified Arrhenius equation
Δ rH0 = -366.613
Δ rH298 = -361.085
2009-03-27
k( )
cm3s-1
Details
1.80e-21 CS + O → S + CO
T(K) = 10-280
α = 1.94E-11
β = 0.00E+0
γ = 2.31E+2
F 0 = 2
g = 0
Type uncert: lognormal
Method: Estimation
Reference
Origin: Other database : OSU
Authors:
Volume,Page:
Year:
DOI: -
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Other database : UdFA    T(K) = 10-800 
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Channels
CS + O → C + SO
T(K): 10-800
Formula: Modified Arrhenius equation
Δ rH0 = 188.187
Δ rH298 = 193.705
2014-03-05
k( )
cm3s-1
Details
0.00e+0 CS + O → C + SO
T(K) = 10-800
α = 4.68E-11
β = 5.00E-1
γ = 2.89E+4
F 0 = 2
g = 0
Type uncert: lognormal
Method: Estimation
Description: Reactions used in the high temperature network for ISM applications by Harada et al. (2010). Value not listed in the NIST.
Reference
Origin: Other database : UdFA
Authors: Mitchell, G. F.
Volume,Page: 287,665-670
Year: 1984
DOI: DOI
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