Physical Properties
Property
Value
Unit
Source
ω
0.5600
KDB
Tig
463.15
K
KDB
Δc H°liquid
[-1374.00; -1368.80]
kJ/mol
Δc H°liquid
-1368.80 ± 1.80
kJ/mol
NIST
Δc H°liquid
-1374.00 ± 11.00
kJ/mol
NIST
Δc H°liquid
-1373.00 ± 5.00
kJ/mol
NIST
LFL
2.40
% in Air
KDB
Tflash,cc
320.93
K
KDB
Δf G°
-286.30
kJ/mol
KDB
Δf H°gas
[-336.90; -324.70]
kJ/mol
Δf H°gas
-336.50
kJ/mol
KDB
Δf H°gas
-330.70 ± 4.20
kJ/mol
NIST
Δf H°gas
-324.70
kJ/mol
NIST
Δf H°gas
-336.90 ± 2.30
kJ/mol
NIST
Δf H°liquid
[-383.80; -377.80]
kJ/mol
Δf H°liquid
-383.80 ± 2.00
kJ/mol
NIST
Δf H°liquid
-377.80 ± 9.30
kJ/mol
NIST
Δfus H°
7.93
kJ/mol
Joback Calculated Property
Δvap H°
[53.10; 57.30]
kJ/mol
Δvap H°
53.10 ± 4.20
kJ/mol
NIST
Δvap H°
53.10
kJ/mol
NIST
Δvap H°
53.10 ± 4.20
kJ/mol
NIST
Δvap H°
57.30
kJ/mol
NIST
Δvap H°
57.30 ± 1.30
kJ/mol
NIST
IE
[10.60; 10.78]
eV
IE
10.60
eV
NIST
IE
10.60
eV
NIST
IE
10.60
eV
NIST
IE
10.78
eV
NIST
log 10 WS
-0.03
Crippen Calculated Property
log Poct/wat
0.257
Crippen Calculated Property
McVol
56.270
ml/mol
McGowan Calculated Property
NFPA Fire
2
KDB
NFPA Health
3
KDB
NFPA Safety
2
KDB
Pc
[5242.73; 5670.00]
kPa
Pc
5670.00
kPa
KDB
Pc
5242.73 ± 100.00
kPa
NIST
Tboil
[412.20; 414.80]
K
Tboil
414.00
K
KDB
Tboil
412.20
K
NIST
Tboil
414.80
K
NIST
Tboil
414.45
K
NIST
Tc
[615.00; 616.57]
K
Tc
615.00
K
KDB
Tc
616.57 ± 3.00
K
NIST
Tfus
[285.00; 290.00]
K
Tfus
285.00
K
KDB
Tfus
285.70
K
NIST
Tfus
285.70 ± 0.20
K
NIST
Tfus
285.45
K
NIST
Tfus
285.30 ± 0.60
K
NIST
Tfus
285.45 ± 0.50
K
NIST
Tfus
Outlier 290.00 ± 1.00
K
NIST
Vc
0.210
m3 /kmol
KDB
Zc
0.2328580
KDB
Temperature Dependent Properties
Property
Value
Unit
Temperature (K)
Source
Cp,gas
[96.30; 120.07]
J/mol×K
[410.77; 589.38]
Cp,gas
96.30
J/mol×K
410.77
Joback Calculated Property
Cp,gas
100.76
J/mol×K
440.54
Joback Calculated Property
Cp,gas
105.01
J/mol×K
470.31
Joback Calculated Property
Cp,gas
109.06
J/mol×K
500.08
Joback Calculated Property
Cp,gas
112.92
J/mol×K
529.84
Joback Calculated Property
Cp,gas
116.59
J/mol×K
559.61
Joback Calculated Property
Cp,gas
120.07
J/mol×K
589.38
Joback Calculated Property
Cp,liquid
[144.20; 145.70]
J/mol×K
[298.15; 300.00]
Cp,liquid
144.20
J/mol×K
298.15
NIST
Cp,liquid
145.70
J/mol×K
300.00
NIST
η
[0.0003216; 0.0336978]
Pa×s
[232.56; 410.77]
η
0.0336978
Pa×s
232.56
Joback Calculated Property
η
0.0100054
Pa×s
262.26
Joback Calculated Property
η
0.0038034
Pa×s
291.96
Joback Calculated Property
η
0.0017285
Pa×s
321.66
Joback Calculated Property
η
0.0008976
Pa×s
351.37
Joback Calculated Property
η
0.0005163
Pa×s
381.07
Joback Calculated Property
η
0.0003216
Pa×s
410.77
Joback Calculated Property
Δfus H
[9.51; 11.16]
kJ/mol
[285.50; 285.70]
Δfus H
11.16
kJ/mol
285.50
NIST
Δfus H
11.16
kJ/mol
285.50
NIST
Δfus H
9.51
kJ/mol
285.70
NIST
Δvap H
[32.70; 46.02]
kJ/mol
[318.00; 414.00]
Δvap H
32.70
kJ/mol
318.00
NIST
Δvap H
45.30
kJ/mol
377.50
NIST
Δvap H
46.02
kJ/mol
414.00
KDB
Pvap
20.00
kPa
368.40
Isobari...
ρl
[1051.00; 1059.17]
kg/m3
[293.00; 298.15]
ρl
1051.00
kg/m3
293.00
KDB
ρl
1051.22
kg/m3
293.15
Measure...
ρl
1059.17
kg/m3
298.15
Evaluat...
Δfus S
33.30
J/mol×K
285.70
NIST
Correlations
Similar Compounds
Find more compounds similar to 2-Propenoic acid .
Mixtures
Sources
KDB Pure (Korean Thermophysical Properties Databank)
KDB Vapor Pressure Data
Crippen Method
Crippen Method
Solubility determination and correlation of cyromazine in sixteen pure solvents and mixing properties of solutions
(Liquid + liquid) equilibria in {water + acrylic acid + (1-butanol, or 2-butanol, or 1-pentanol)} systems at T = 293.2 K, T = 303.2 K, and T = 313.2 K and atmospheric pressure
Measurement and modelling of urea solubility in aqueous propane-1,2,3-triol and prop-2-enoic acid solutions
Isobaric Vapor Liquid Liquid Equilibrium for Water + Cyclohexane + Acrylic Acid at 200 mmHg
Ternary Liquid Liquid Equilibria of Water + Prop-2-enoic Acid + Isobutyl Ethanoate at Different Temperatures
Isobaric Vapor Liquid Equilibrium for Binary Systems of Toluene + Acrylic Acid, Toluene + Acetic Acid, and Cyclohexane + Acrylic Acid at 20 kPa
Evaluation of the Performance of Four Solvents for the Liquid Liquid Extraction of Acrylic Acid from Water
Measurements and Comparative Study of Ternary Liquid Liquid Equilibria for Water + Acrylic Acid + Cyclopentyl Methyl Ether at (293.15, 303.15, and 313.15) K and 100.249 kPa
Liquid Liquid Equilibria of the Ternary System Water + Acrylic Acid + 4-Methyl-2-pentanone at 298.15 K
Joback Method
KDB
McGowan Method
NIST Webbook
The Yaws Handbook of Vapor Pressure
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that the value is more than 2 standard deviations away from the
property mean.