- PII
- 10.31857/S0044453723050205-1
- DOI
- 10.31857/S0044453723050205
- Publication type
- Status
- Published
- Authors
- Volume/ Edition
- Volume 97 / Issue number 5
- Pages
- 662-672
- Abstract
- A new equation of state is proposed for a solution of gas at infinite dilution, based on considering the interaction between a gas and a solvent at the microscopic level. It is used to describe the properties of an infinitely dilute aqueous solution of argon in a wide range of temperatures and pressures, including the supercritical region of water. It is shown that the resulting equation is capable of predicting the properties of an aqueous solution of an inert gas with high accuracy, based on a limited set of data at moderate temperatures.
- Keywords
- уравнение состояния термодинамическая модель уровень отсчета раствор при бесконечном разбавлении аргон вода
- Date of publication
- 12.09.2025
- Year of publication
- 2025
- Number of purchasers
- 0
- Views
- 11
References
- 1. Plyasunov A.V., Korzhinskaya V.S., O’Connell J.P. // Fluid Phase Equilib. 2019. V. 498. P. 9.
- 2. Plyasunov A.V., Korzhinskaya V.S. // Fluid Phase Equilib. 2020. V. 521. P. 112690.
- 3. Plyasunov A.V., Korzhinskaya V.S. // Fluid Phase Equilib. 2021. V. 529. P. 112872.
- 4. Majer V., Sedlbauer J., Wood R.H. // Aqueous Systems at Elevated Temperatures and Pressures / Ed. by D.A. Palmer. N.Y.: Elsevier Ltd., 2004. P. 99.
- 5. Sedlbauer J., O’Connell J.P., Wood R.H. // Chem. Geol. 2000. V. 163. № 1–4. P. 43.
- 6. Akinfiev N.N., Diamond L.W. // Geochim. Cosmochim. Acta. 2003. V. 67. № 4. P. 613.
- 7. Plyasunov A.V., O’Connell J.P., Wood R.H. // Geochim. Cosmochim. Acta. 2000. V. 64, № 3. P. 495.
- 8. Plyasunov A.V., O’Connell J.P., Wood R.H. et al. // Geochim. Cosmochim. Acta. 2000. V. 64. № 16. P. 2779.
- 9. Plyasunov A.V., O’Connell J.P., Wood R.H. et al. // Fluid Phase Equilib. 2001. V. 183–184. P. 133.
- 10. Mei Y., Liu W., Brugger J. et al. // Geochim. Cosmochim. Acta. 2018. V. 226. P. 84.
- 11. Hu Y., Lüdecke D., Prausnitz J. // Fluid Phase Equilib. 1984. V. 17. № 2. P. 217.
- 12. Hu Y., Xu Y.-N., Prausnitz J. // Fluid Phase Equilib. 1985. V. 23. № 1. P. 15.
- 13. Ben-Naim A., Marcus Y. // J. Chem. Phys. 1984. V. 81. № 4. P. 2016.
- 14. Cooney W.R., Connell J.P. // Chem. Eng. Commun. 1987. V. 56. № 1–6. P. 341.
- 15. O’Connell J.P., Sharygin A.V., Wood R.H. // Ind. Eng. Chem. Res. 1996. V. 35. № 8. P. 2808.
- 16. de Souza L.E.S., Ben-Amotz D. // J. Chem. Phys. 1994. V. 101. № 11. P. 9858.
- 17. Ben-Amotz D., Omelyan I.P. // J. Chem. Phys. 2001. V. 115. № 20. P. 9401.
- 18. Matyushov D.V., Ladanyi B.M. // J. Chem. Phys. 1997. V. 107. № 15. P. 5815.
- 19. Pierotti R.A. // Chem. Rev. 1976. V. 76. № 6. P. 717.
- 20. Ben-Amotz D. // J. Chem. Phys. 2005. V. 123. № 18. P. 184504.
- 21. Pohorille A., Pratt L.R. // J. Am. Chem. Soc. 1990. V. 112. № 13. P. 5066.
- 22. Floris F.M., Selmi M., Tani A. et al. // J. Chem. Phys. 1997. V. 107. № 16. P. 6353.
- 23. Ashbaugh H.S., Pratt L.R. // Rev. Mod. Phys. 2006. V. 78. № 1. P. 159.
- 24. Bickes R.W., Duquette G., van den Meijdenberg C.J.N. et al. // J. Phys. B At. Mol. Phys. 1975. V. 8. № 18. P. 3034.
- 25. Cao D., Wang W. // Chem. Eng. Sci. 2000. V. 55. № 11. P. 2099.
- 26. Lee R.J., Chao K.C. // Mol. Phys. 1987. V. 61. № 6. P. 1431.
- 27. Trejos V.M., Pizio O., Sokolowski S. // Fluid Phase Equilib. 2018. V. 473. P. 145.
- 28. Neff R.O., McQuarrie D.A. // J. Phys. Chem. 1973. V. 77. № 3. P. 413.
- 29. Moré J.J. // Numerical analysis. 1978. P. 105.
- 30. Wagner W., Pruß A. // J. Phys. Chem. Ref. Data. 2002. V. 31. № 2. P. 387.
- 31. Fernández D.P., Goodwin A.R.H., Lemmon E.W. et al. // J. Phys. Chem. Ref. Data. 1997. V. 26. № 4. P. 1125.
- 32. Voskov A.L., Kovalenko N.A. // Fluid Phase Equilib. 2020. V. 507. P. 112419.
- 33. Potter R.W., Clynne M.A. // J. Solution Chem. 1978. V. 7. № 11. P. 837.
- 34. Crovetto R., Fernández-Prini R., Japas M.L. // J. Chem. Phys. 1982. V. 76. № 2. P. 1077.
- 35. Solubility Data Series. Volume 4. Argon / Ed. by H.L. Clever. N.Y.: Pergamon Press, 1980. 331 p.
- 36. Rettich T.R., Battino R., Wilhelm E. // J. Solution Chem. 1992. V. 21. № 9. P. 987.
- 37. Krause D., Benson B.B. // J. Solution Chem. 1989. V. 18. № 9. P. 823.
- 38. Belonoshko A., Saxena S. // Geochim. Cosmochim. Acta. 1992. V. 56. № 10. P. 3611.
- 39. Belonoshko A.B., Shi P., Saxena S.K. // Comput. Geosci. 1992. V. 18. № 9. P. 1267.
- 40. Olofsson G., Oshodj A.A., Qvarnström E. et al. // J. Chem. Thermodyn. 1984. V. 16. № 11. P. 1041.
- 41. Dec S.F., Gill S.J. // J. Solution Chem. 1985. V. 14. № 6. P. 417.
- 42. Крестов Г.А., Пророков В.Н., Долотов В.В. // Журн. физ. химии. 1982. Т. 56. № 1. С. 238.
- 43. Alexander D.M. // J. Phys. Chem. 1959. V. 63. № 6. P. 994.
- 44. Watanabe H., Iizuka K. // Metrologia. 1985. V. 21. № 1. P. 19.
- 45. Zhou T., Battino R. // J. Chem. Eng. Data. 2001. V. 46. № 2. P. 331.
- 46. Biggerstaff D.R., White D.E., Wood R.H. // J. Phys. Chem. 1985. V. 89. № 20. P. 4378.
- 47. Biggerstaff D.R., Wood R.H. // J. Phys. Chem. 1988. V. 92. № 7. P. 1994.
- 48. Biggerstaff D.R., Wood R.H. // J. Phys. Chem. 1988. V. 92. № 7. P. 1988.
- 49. Nezbeda I., Aim K. // Fluid Phase Equilib. 1984. V. 17. № 1. P. 1.
- 50. Hodges M.P., Wheatley R.J., Harvey A.H. // J. Chem. Phys. 2002. V. 117. № 15. P. 7169.
- 51. Broadbent R.D., Neilson G.W. // J. Chem. Phys. 1994. Vol. 100, № 10. P. 7543.
- 52. Sullivan D.M., Neilson G.W., Fischer H.E. // J. Chem. Phys. 2001. V. 115. № 1. P. 339.
- 53. Botti A., Bruni F., Isopo A. et al. // J. Chem. Phys. 2003. V. 118. № 1. P. 235.