Physical Properties
Property
Value
Unit
Source
Δf G°
-276.44
kJ/mol
Joback Calculated Property
Δf H°gas
-476.91
kJ/mol
Joback Calculated Property
Δfus H°
15.95
kJ/mol
Joback Calculated Property
Δvap H°
61.92
kJ/mol
Joback Calculated Property
log 10 WS
-0.97
Crippen Calculated Property
log Poct/wat
0.530
Crippen Calculated Property
McVol
107.140
ml/mol
McGowan Calculated Property
Pc
3896.50
kPa
Joback Calculated Property
Tboil
520.60
K
Joback Calculated Property
Tc
680.76
K
Joback Calculated Property
Tfus
264.02
K
Joback Calculated Property
Vc
0.404
m3 /kmol
Joback Calculated Property
Temperature Dependent Properties
Pressure Dependent Properties
Property
Value
Unit
Pressure (kPa)
Source
Tboilr
363.20
K
0.07
NIST
Correlations
Property
Value
Unit
Temperature (K)
Source
Pvap
[1.33; 202.68]
kPa
[395.12; 517.05]
The Yaw...
Equation ln(Pvp) = A + B/(T + C) Coefficient A 1.81734e+01 Coefficient B -5.58302e+03 Coefficient C -8.29720e+01 Temperature range, min. 395.12
Temperature range, max. 517.05
Pvap
1.33
kPa
395.12
Calculated Property
Pvap
2.81
kPa
408.67
Calculated Property
Pvap
5.56
kPa
422.22
Calculated Property
Pvap
10.47
kPa
435.76
Calculated Property
Pvap
18.79
kPa
449.31
Calculated Property
Pvap
32.36
kPa
462.86
Calculated Property
Pvap
53.67
kPa
476.41
Calculated Property
Pvap
86.08
kPa
489.95
Calculated Property
Pvap
133.92
kPa
503.50
Calculated Property
Pvap
202.68
kPa
517.05
Calculated Property
Similar Compounds
Find more compounds similar to 1,5-Hexanediol .
Mixtures
Sources
Crippen Method
Crippen Method
Effect of temperature on the surface tension of diluted aqueous solutions of 1,2-hexanediol, 1,5-hexanediol, 1,6-hexanediol and 2,5-hexanediol
Effect of temperature on the volumetric properties of dilute aqueous solutions of 1,2-hexanediol, 1,5-hexanediol, 1,6-hexanediol, and 2,5-hexanediol
Joback Method
McGowan Method
NIST Webbook
The Yaws Handbook of Vapor Pressure
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