Ethylene Oxide M.W. [1]

44.0532

N.B.P. [2]

283.6 K

T.P. [2]

160.65 K

C2H4O Pc [3]

7.19 MPa

Tc [3]

469.15 K

Vc [3]

0.14030 m3/kmol

T

K

Vapor Pressure

kPa

B(T)

cm3·mol-1

dB/dT · T

cm3·kmol-1

C(T)

cm6·mol-2

dC/dT · T

cm6·kmol-2

mW/(m·K)

µPa·s

Estimated Uncertainty 1%/0.1% 5% Gas densities are calculated to better than 0.1% over the temperature and pressure ranges of the reference. 5% 10%
Reference [4]/[5] [6] [5] [5] [5] [5] [7] [5]
200.00 4.36 0.71 -2534.77 10.118 -23168070 312.381 - 9.99
210.00 4.46 1.64 -2094.54 8.022 -12053688 160.531 - 10.35
220.00 4.57 3.47 -1758.66 6.482 -6497856 86.202 - 10.71
230.00 4.69 6.83 -1497.23 5.325 -3598875 48.013 - 11.06
240.00 4.83 12.58 -1290.13 4.439 -2031201 27.561 - 11.41
250.00 4.97 21.90 -1123.50 3.748 -1158171 16.211 - 11.75
260.00 5.12 36.29 -987.56 3.201 -660372 9.717 - 12.09
270.00 5.28 57.62 -875.27 2.762 -371344 5.905 - 12.43
280.00 5.45 88.08 -781.47 2.406 -201416 3.617 10.59 12.76
290.00 5.60 130.21 -702.33 2.113 -100860 2.219 11.43 13.09
300.00 5.76 186.90 -634.93 1.869 -41395 1.352 12.30 13.41
310.00 5.93 261.32 -577.06 1.665 -6582 0.810 13.21 13.74
320.00 6.10 356.91 -526.99 1.493 13314 0.468 14.15 14.06
330.00 6.27 477.37 -483.36 1.346 24148 0.252 15.13 14.38
340.00 6.45 626.63 -445.11 1.219 29489 0.116 16.15 14.69
350.00 6.62 808.81 -411.37 1.110 31533 0.032 17.20 15.00
360.00 6.80 1028.24 -381.45 1.016 31640 -0.020 18.29 15.32
370.00 6.97 1289.43 -354.78 0.933 30654 -0.050 19.42 15.62
380.00 7.15 1597.07 -330.90 0.860 29099 -0.065 20.59 15.93
390.00 7.32 1956.04 -309.42 0.795 27296 -0.072 21.79 16.24
400.00 7.49 2371.45 -290.02 0.738 25442 -0.073 23.03 16.54
410.00 7.66 2848.61 -272.44 0.687 23650 -0.071 24.31 16.84
420.00 7.83 3393.09 -256.44 0.641 21985 -0.067 25.63 17.15
430.00 7.99 4010.75 -241.84 0.600 20478 -0.061 26.99 17.45
440.00 8.14 4707.76 -228.47 0.563 19142 -0.055 28.39 17.75
450.00 8.34 5490.66 -216.19 0.530 17977 -0.049 29.83 18.04
460.00 8.49 6366.38 -204.89 0.499 16975 -0.042 31.31 18.34
470.00 8.64 7342.31 -194.46 0.472 16127 -0.036 32.83 18.64
480.00 8.79 - -184.80 0.446 15419 -0.031 34.40 18.93
490.00 8.93 - -175.84 0.423 14838 -0.026 36.00 19.23
500.00 9.07 - -167.51 0.402 14371 -0.021 37.64 19.52
550.00 9.74 - -133.43 0.318 13340 -0.002 46.50 20.98
600.00 10.36 - -108.45 0.259 13677 0.009 56.45 22.42
650.00 10.93 - -89.48 0.217 14678 0.015 67.54 23.86
700.00 11.45 - -74.65 0.185 15967 0.019 79.80 25.28
750.00 11.93 - -62.77 0.160 17347 0.021 93.28 26.71
800.00 12.38 - -53.06 0.141 18719 0.022 108.02 28.11
850.00 12.79 - -45.00 0.125 20034 0.022 124.08 29.51
900.00 13.17 - -38.21 0.113 21270 0.021 141.50 30.90
950.00 13.53 - -32.42 0.102 22420 0.021 160.34 32.27
1000.00 13.85 - -27.42 0.093 23485 0.020 180.63 33.63

References:

  1. IUPAC; "Atomic Weights of the Elements 1993"; J. Phys. Chem. Ref. Data 1995, 24, 1561.
  2. Stull, D.P.; Shrader, S.H.; McDonald, R.A.; J. Chem. Eng. Data 1959, 4, 311.
  3. Zwolinski, B.J.; Kudchadker, A.P.; Chem. Rev. 1968, 68, 659.
  4. "Selected Values of Properties of Chemical Compounds"; Data Project; Thermodynamics Research Center, Texas A&M University, College Station, TX, 1984.
  5. J. J. Hurly, "Thermophysical Properties of Nitrogen Trifluoride, Ethylene Oxide, and Trimethyl Gallium, from Speed-of-Sound Measurements", Int. J. Thermophys., In Press.
  6. D. R. Stull, "Vapor Pressure of Pure Substances", Ind. Eng. Chem. 1947, 39, 517.
  7. Senftleben, H.; Z. Agnew Phys. 1964, 17, 86.

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