Dortmund Data Bank

Virial Coefficients of Carbon dioxide

The experimental data shown in these pages are freely available and have been published already in the DDB Explorer Edition. The data represent a small sub list of all available data in the Dortmund Data Bank. For more data or any further information please search the DDB or contact DDBST.

Component

Formula Molar Mass CAS Registry Number Name
CO2 44.010 124-38-9 Carbon dioxide
Search the DDB for all data of Carbon dioxide

Diagrams


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Data Table

T [K] Second Virial Coefficient [cm3/mol] State Reference
292.95 -127.0000 Vapor 3
296.15 -125.4000 Vapor 4
298.15 -123.0000 Vapor 3
303.15 -118.2000 Vapor 5
303.15 -118.0000 Vapor 3
313.15 -109.3000 Vapor 5
323.15 -103.9100 Vapor 6
323.15 -101.9000 Vapor 5
373.15 -73.0300 Vapor 6
373.15 -72.5000 Vapor 1
423.15 -52.0000 Vapor 6
423.15 -51.5000 Vapor 2

List of References

Number Source
1 Tsiklis D.S.; Linshits L.R.; Rodkina I.B.: Untersuchung der Volumeigenschaften von Gas-Mischungen. I. Molvolumina und zweite Virialkoeffiziente der CO2-He-Mischungen bei 100°C. Zh.Fiz.Khim. 48 (1974) 1541-1544
2 Tsiklis D.S.; Linshits L.R.; Rodkina I.B.: Untersuchung der Volumeigenschaften von Gas-Mischungen. I. Molvolumina und zweite Virialkoeffiziente der CO2-He-Mischungen bei 150°C. Zh.Fiz.Khim. 48 (1974) 1544-1546
3 Khazanova N.E.; Sominskaya E.E.; Zakharova A.V.; Rozovski M.B.: Thermodynamische Eigenschaften des Systems Ethan-Kohlenstoffdioxyd. p-V-T-N-Daten. Teplofiz.Svoistva Vesh.Mater. 10 (1976) 213-219
4 Schramm B.; Elias E.; Kern L.; Natour G.; Schmitt A.; Weber C.: Precise Measurements of Second Virial Coefficients of Simple Gases and Gas Mixtures in the Temperature Range Below 300 K. Int.J.Phys.Chem.Ber.Bunsen-Ges. 95 (1991) 615-621
5 McEllroy P.J.; Kee L.L.; Renner C.A.: Excess Second Virial Coefficients for Binary Mixtures of Carbon Dioxide with Methane, Ethane and Propane. J.Chem.Eng.Data 35 (1990) 314-317
6 Mallu B.V.; Natarajan G.; Viswanath D.S.: (P, Vm, T, x) and Virial Coefficients of {x CO2 +(1-X)CO}. J.Chem.Thermodyn. 21 (1989) 989-996

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