Norflurane

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Critical density

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Data compilation copyright by the U.S. Secretary of Commerce on behalf of the U.S.A. All rights reserved.

Data compiled by: Thermodynamics Research Center, NIST Boulder Laboratories, Chris Muzny director

ρc (mol/l) Reference Comment
4.97Fujiwara, Nakamura, et al., 1998Uncertainty assigned by TRC = 0.05 mol/l; 3 measurements by obs. of critical opalesence. Made to establish accuracy of technique, includes review of and comparison with previous literature; TRC
4.99Fujiwara, Nakamura, et al., 1998Uncertainty assigned by TRC = 0.03 mol/l; 3 measurements by obs. of critical opalesence. Made to establish accuracy of technique, includes review of and comparison with previous literature; TRC
5.01Fujiwara, Nakamura, et al., 1998Uncertainty assigned by TRC = 0.05 mol/l; 3 measurements by obs. of critical opalesence. Made to establish accuracy of technique, includes review of and comparison with previous literature; TRC
4.99Aoyama, Kishizawa, et al., 1996Uncertainty assigned by TRC = 0.02 mol/l; At critical opalesence, includes revies of and comparison with previous literature; TRC
4.98Higashi, 1995Uncertainty assigned by TRC = 0.05 mol/l; TRC
5.01Higashi, 1994Uncertainty assigned by TRC = 0.03 mol/l; TRC
5.049Morrison and Ward, 1991Uncertainty assigned by TRC = 0.025 mol/l; TRC
4.97Fukushima, Watanabe, et al., 1990Uncertainty assigned by TRC = 0.05 mol/l; by extrapolation of rectilinear diameter to Tc; TRC
5.020Basu and Wilson, 1989Uncertainty assigned by TRC = 0.05 mol/l; TRC
4.98Kabata, Tanikawa, et al., 1989Uncertainty assigned by TRC = 0.03 mol/l; TRC
5.020Wilson and Basu, 1988Uncertainty assigned by TRC = 0.02 mol/l; from rectilinear diameters; TRC

In addition to the Thermodynamics Research Center (TRC) data available from this site, much more physical and chemical property data is available from the following TRC products:


References

Go To: Top, Critical density, Notes

Data compilation copyright by the U.S. Secretary of Commerce on behalf of the U.S.A. All rights reserved.

Fujiwara, Nakamura, et al., 1998
Fujiwara, K.; Nakamura, S.; Noguchi, M., Critical Parameters and Vapor Pressure Measurements for 1,1,1-Trifluoroethane (R-143a), J. Chem. Eng. Data, 1998, 43, 55-9. [all data]

Aoyama, Kishizawa, et al., 1996
Aoyama, H.; Kishizawa, G.; Sato, H.; Watanabe, K., Vapor-Liquid Coexistence Curves in the Critical Region and the Critical Temperatures and Densities of 1,1,1,2-Tetrafluoroethane (R-134a), 1,1,1- Trifluoroethane (R-143a), and 1,1,1,2,3,3- Hexafluorop, J. Chem. Eng. Data, 1996, 41, 1046-1051. [all data]

Higashi, 1995
Higashi, Y., Vapor-liquid equilibrium, coexistence curve, and critical locus for binary HFC-32/HFC-134a mixture, Int. J. Thermophys., 1995, 16, 1175-84. [all data]

Higashi, 1994
Higashi, Y., Critical parameters for HFC134a, HFC32 and HFC125, Int. J. Refrig., 1994, 17, 524-531. [all data]

Morrison and Ward, 1991
Morrison, G.; Ward, D., Thermodynamic properties of two alternative refrigerants: 1,1-dichloro-2,2, 2-trifluoroethane (R123) and 1,1,1,2- tetrafluoroethane (R134a), Fluid Phase Equilib., 1991, 62, 65-86. [all data]

Fukushima, Watanabe, et al., 1990
Fukushima, M.; Watanabe, N.; Kamimura, T., Measurements of the vapor-liquid coexistence curves and the critical parameters of HCFC123 and HFC134a, Nippon Reito Kyokai Ronbunshu, 1990, 7, 189-99. [all data]

Basu and Wilson, 1989
Basu, R.S.; Wilson, D.P., Thermophysical properties of 1,1,1,2-Tetrafluoroethane (R-134a), Int. J. Thermophys., 1989, 10, 591-603. [all data]

Kabata, Tanikawa, et al., 1989
Kabata, Y.; Tanikawa, S.; Uematsu, M.; Watanabe, K., Measurements of the vapor-liquid coexistence curve and the critical parameters for 1,1,1,2-Tetrafluoroethane, Int. J. Thermophys., 1989, 10, 605. [all data]

Wilson and Basu, 1988
Wilson, D.P.; Basu, R.S., Thermodynamic properties of a new stratospherically safe working fluid- refrigerant 134A, ASHRAE Trans., 1988, 94, 2095-2118. [all data]


Notes

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