H2 + NH3+
Gaz phase reaction (type: Bimolecular reactions)
Datasheet T(K) = 10-20
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Channels | |||||
---|---|---|---|---|---|
H2 + NH3+
→
H + NH4+
|
10-20 | Modified Arrhenius equation |
ΔrH0 = -84.265
Δ rH298 = -87.396 |
2013-10-10 |
H2 + NH3+ → H + NH4+
T(K): 10-20 Formula: Modified Arrhenius equation Δ rH0 = -84.265 Δ rH298 = -87.396 2013-10-10 |
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k(
)
cm3s-1 |
Details | ||||||||
---|---|---|---|---|---|---|---|---|---|
H2 + NH3+
→
H + NH4+
|
10-20 | 1.19e-12 | 3.36E-14 | 0.00E+0 | -3.57E+1 | 1.5 | 0 | lognormal |
H2 + NH3+ → H + NH4+
T(K) = 10-20 α = 3.36E-14 β = 0.00E+0 γ = -3.57E+1 F 0 = 1.5 g = 0 Type uncert: lognormal Method: Reviews and Evaluations |
Method: Reviews and Evaluations
|
Datasheet T(K) = 21-230
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Channels | |||||
---|---|---|---|---|---|
H2 + NH3+
→
H + NH4+
|
21-230 | Modified Arrhenius equation |
ΔrH0 = -84.265
Δ rH298 = -87.396 |
2013-10-10 |
H2 + NH3+ → H + NH4+
T(K): 21-230 Formula: Modified Arrhenius equation Δ rH0 = -84.265 Δ rH298 = -87.396 2013-10-10 |
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k(
)
cm3s-1 |
Details | ||||||||
---|---|---|---|---|---|---|---|---|---|
H2 + NH3+
→
H + NH4+
|
21-230 | 2.00e-13 | 2.00E-13 | 0.00E+0 | 0.00E+0 | 1.5 | 0 | lognormal |
H2 + NH3+ → H + NH4+
T(K) = 21-230 α = 2.00E-13 β = 0.00E+0 γ = 0.00E+0 F 0 = 1.5 g = 0 Type uncert: lognormal Method: Reviews and Evaluations |
Method: Reviews and Evaluations
|
Datasheet T(K) = 231-800
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Channels | |||||
---|---|---|---|---|---|
H2 + NH3+
→
H + NH4+
|
231-800 | Modified Arrhenius equation |
ΔrH0 = -84.265
Δ rH298 = -87.396 |
2013-10-10 |
H2 + NH3+ → H + NH4+
T(K): 231-800 Formula: Modified Arrhenius equation Δ rH0 = -84.265 Δ rH298 = -87.396 2013-10-10 |
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k(
)
cm3s-1 |
Details | ||||||||
---|---|---|---|---|---|---|---|---|---|
H2 + NH3+
→
H + NH4+
|
231-800 | 0.00e+0 | 1.70E-11 | 0.00E+0 | 1.04E+3 | 1.5 | 0 | lognormal |
H2 + NH3+ → H + NH4+
T(K) = 231-800 α = 1.70E-11 β = 0.00E+0 γ = 1.04E+3 F 0 = 1.5 g = 0 Type uncert: lognormal Method: Reviews and Evaluations |
Method: Reviews and Evaluations
|
Other database : UdFA T(K) = 10-20
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Channels | |||||
---|---|---|---|---|---|
H2 + NH3+
→
H + NH4+
|
10-20 | Modified Arrhenius equation |
ΔrH0 = -84.265
Δ rH298 = -87.396 |
2011-02-17 |
H2 + NH3+ → H + NH4+
T(K): 10-20 Formula: Modified Arrhenius equation Δ rH0 = -84.265 Δ rH298 = -87.396 2011-02-17 |
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k(
)
cm3s-1 |
Details | ||||||||
---|---|---|---|---|---|---|---|---|---|
H2 + NH3+
→
H + NH4+
|
10-20 | 1.19e-12 | 3.36E-14 | 0.00E+0 | -3.57E+1 | 1.5 | 0 | lognormal |
H2 + NH3+ → H + NH4+
T(K) = 10-20 α = 3.36E-14 β = 0.00E+0 γ = -3.57E+1 F 0 = 1.5 g = 0 Type uncert: lognormal Method: Measurements |
Method: Measurements
|
Other database : UdFA T(K) = 301-3400
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Channels | |||||
---|---|---|---|---|---|
H2 + NH3+
→
H + NH4+
|
301-3400 | Modified Arrhenius equation |
ΔrH0 = -84.265
Δ rH298 = -87.396 |
2011-02-17 |
H2 + NH3+ → H + NH4+
T(K): 301-3400 Formula: Modified Arrhenius equation Δ rH0 = -84.265 Δ rH298 = -87.396 2011-02-17 |
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k(
)
cm3s-1 |
Details | ||||||||
---|---|---|---|---|---|---|---|---|---|
H2 + NH3+
→
H + NH4+
|
301-3400 | 0.00e+0 | 1.70E-11 | 0.00E+0 | 1.04E+3 | 1.25 | 0 | lognormal |
H2 + NH3+ → H + NH4+
T(K) = 301-3400 α = 1.70E-11 β = 0.00E+0 γ = 1.04E+3 F 0 = 1.25 g = 0 Type uncert: lognormal Method: Measurements |
Method: Measurements
|
Other database : UdFA T(K) = 70-200
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Channels | |||||
---|---|---|---|---|---|
H2 + NH3+
→
H + NH4+
|
70-200 | Modified Arrhenius equation |
ΔrH0 = -84.265
Δ rH298 = -87.396 |
2011-02-17 |
H2 + NH3+ → H + NH4+
T(K): 70-200 Formula: Modified Arrhenius equation Δ rH0 = -84.265 Δ rH298 = -87.396 2011-02-17 |
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k(
)
cm3s-1 |
Details | ||||||||
---|---|---|---|---|---|---|---|---|---|
H2 + NH3+
→
H + NH4+
|
70-200 | 2.00e-13 | 2.00E-13 | 0.00E+0 | 0.00E+0 | 1.5 | 0 | lognormal |
H2 + NH3+ → H + NH4+
T(K) = 70-200 α = 2.00E-13 β = 0.00E+0 γ = 0.00E+0 F 0 = 1.5 g = 0 Type uncert: lognormal Method: Measurements |
Method: Measurements
|
Other database : OSU T(K) = 10-280
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Channels | |||||
---|---|---|---|---|---|
H2 + NH3+
→
H + NH4+
|
10-280 | Modified Arrhenius equation |
ΔrH0 = -84.265
Δ rH298 = -87.396 |
2009-03-27 |
H2 + NH3+ → H + NH4+
T(K): 10-280 Formula: Modified Arrhenius equation Δ rH0 = -84.265 Δ rH298 = -87.396 2009-03-27 |
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k(
)
cm3s-1 |
Details | ||||||||
---|---|---|---|---|---|---|---|---|---|
H2 + NH3+
→
H + NH4+
|
10-280 | 2.46e-12 | 1.50E-14 | -1.50E+0 | 0.00E+0 | 1.5 | 0 | lognormal |
H2 + NH3+ → H + NH4+
T(K) = 10-280 α = 1.50E-14 β = -1.50E+0 γ = 0.00E+0 F 0 = 1.5 g = 0 Type uncert: lognormal Method: Estimation |
Method: Estimation
|
Reference | |||||||
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Other database : OSU | |||||||
Origin: Other database : OSU
Authors: Volume,Page: Year: DOI: - Download citation: |
Anicich, V. G. (2003) T(K) = 300-300
Show/Hide those values
Channels | |||||
---|---|---|---|---|---|
H2 + NH3+
→
H + NH4+
|
300-300 | Modified Arrhenius equation |
ΔrH0 = -84.265
Δ rH298 = -87.396 |
2012-07-30 |
H2 + NH3+ → H + NH4+
T(K): 300-300 Formula: Modified Arrhenius equation Δ rH0 = -84.265 Δ rH298 = -87.396 2012-07-30 |
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k(
)
cm3s-1 |
Details | ||||||||
---|---|---|---|---|---|---|---|---|---|
H2 + NH3+
→
H + NH4+
|
300-300 | 4.40e-13 | 4.40E-13 | 0.00E+0 | 0.00E+0 | 1.2 | 0 | lognormal |
H2 + NH3+ → H + NH4+
T(K) = 300-300 α = 4.40E-13 β = 0.00E+0 γ = 0.00E+0 F 0 = 1.2 g = 0 Type uncert: lognormal Method: Reviews and Evaluations Description: Taken from Anicich, J. Phys. Chem. Ref. Data 22, 1469-1569 (1993) |
Method: Reviews and Evaluations
Description: Taken from Anicich, J. Phys. Chem. Ref. Data 22, 1469-1569 (1993) |
Other database : OSU T(K) = 10-800
Show/Hide those values
Channels | |||||
---|---|---|---|---|---|
H2 + NH3+
→
H + H + NH3+
|
10-800 | Modified Arrhenius equation |
ΔrH0 = 216.78
Δ rH298 = 217.998 |
2014-02-20 |
H2 + NH3+ → H + H + NH3+
T(K): 10-800 Formula: Modified Arrhenius equation Δ rH0 = 216.78 Δ rH298 = 217.998 2014-02-20 |
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k(
)
cm3s-1 |
Details | ||||||||
---|---|---|---|---|---|---|---|---|---|
H2 + NH3+
→
H + H + NH3+
|
10-800 | 0.00e+0 | 3.00E-11 | 5.00E-1 | 5.20E+4 | 2 | 0 | lognormal |
H2 + NH3+ → H + H + NH3+
T(K) = 10-800 α = 3.00E-11 β = 5.00E-1 γ = 5.20E+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). |
Method: Estimation
Description: Reactions used in the high temperature network for ISM applications by Harada et al. (2010). |