Feistel, R.: A new extended Gibbs thermodynamic potential of seawater, Progr. Oceanogr., 58, 43–115, 2003.
Feistel, R.: Numerical implementation and oceanographic application of the Gibbs thermodynamic potential of seawater, Ocean Sci., 1, 9–16, https://doi.org/10.5194/os-1-9-2005, 2005.
Feistel, R.: A Gibbs Function for Seawater Thermodynamics for −6 to 80 °C and Salinity up to 120 g/kg, Deep-Sea Res. Pt. I, 55, 1639–1671, 2008.
Feistel, R.: Extended Equation of State for Seawater at Elevated Temperature and Salinity, Desalination, 250, 14–18, 2010.
Feistel, R., Wagner, W., Tchijov, V., and Guder, C.: Numerical implementation and oceanographic application of the Gibbs potential of ice, Ocean Sci., 1, 29–38, https://doi.org/10.5194/os-1-29-2005, 2005.
Feistel, R. and Wagner, W.: Sublimation pressure and sublimation enthalpy of H
2O ice Ih between 0 and 273.16 K, Geochim. Cosmochim. Ac., 71, 36–45, 2007.
Feistel, R., Wright, D. G., Miyagawa, K., Harvey, A. H., Hruby, J., Jackett, D. R., McDougall, T. J., and Wagner, W.: Mutually consistent thermodynamic potentials for fluid water, ice and seawater: a new standard for oceanography, Ocean Sci., 4, 275–291, https://doi.org/10.5194/os-4-275-2008, 2008.
Feistel, R., Wright, D. G., Kretzschmar, H.-J., Hagen, E., Herrmann, S., and Span, R.: Thermodynamic properties of sea air, Ocean Sci., 6, 91–141, https://doi.org/10.5194/os-6-91-2010, 2010a.
Feistel, R., Weinreben, S., Wolf, H., Seitz, S., Spitzer, P., Adel, B., Nausch, G., Schneider, B., and Wright, D. G.: Density and Absolute Salinity of the Baltic Sea 2006-2009, Ocean Sci., 6, 3–24, https://doi.org/10.5194/os-6-3-2010, 2010b.
Fischer, M.: Carbonate chemistry and CaCO
3 precipitation as ikaite in Antarctic sea ice: Analysis in the Southern Ocean and off Adélie Land, Antarctica, University of Leipzig, Diploma thesis, 2009.
Gill, A. E.: Atmosphere Ocean Dynamics, Academic Press, San Diego, 1982.
Gleitz, M., Rutgers van der Loeff, M. M., Thomas, D. N., Dieckmann, G. S., and Millero, F. J.: Comparison of summer and winter inorganic carbon, oxygen and nutrient concentrations in Antarctic sea ice brine, Mar. Chem., 51, 81–91, 1995.
Harvey A. H. and Huang, P. H.: First-Principles Calculation of the Air – Water Second Virial Coefficient, Int. J. Thermophys., 28, 556–565, 2007.
Hyland, R. W. and Wexler, A.: Formulations for the thermodynamic properties of dry air from 173.15 K to 473.15 K, and of saturated moist air from 173.15 K to 372.15 K, at pressures up to 5 MPa, ASHRAE Transact., 89, 520–535, 1983.
IAPWS: Revised Release on the IAPWS Industrial Formulation 1997 for the Thermodynamic Properties of Water and Steam, The International Association for the Properties of Water and Steam, Lucerne, Switzerland, August 2007, available at: http://www.iapws.org, last access: July 2010, 2007.
IAPWS: Release on the IAPWS Formulation 2008 for the Thermodynamic Properties of Seawater, The International Association for the Properties of Water and Steam, Berlin, Germany, September 2008, available at: http://www.iapws.org, last access: July 2010, 2008a.
IAPWS: Guideline on the Use of Fundamental Physical Constants and Basic Constants of Water, The International Association for the Properties of Water and Steam, Gaithersburg, Maryland, USA, September 2001, available at: http://www.iapws.org, last access: July 2010, 2008b.
IAPWS: Revised Release on the Pressure along the Melting and Sublimation Curves of Ordinary Water Substance, The International Association for the Properties of Water and Steam, Berlin, Germany, September 2008, available at: http://www.iapws.org, last access: July 2010, 2008c.
IAPWS: Revised Release on the IAPWS Formulation 1995 for the Thermodynamic Properties of Ordinary Water Substance for General and Scientific Use. The International Association for the Properties of Water and Steam, Doorwerth, The Netherlands, September 2009, available at: http://www.iapws.org, last access: July 2010, 2009a.
IAPWS: Revised Release on the Equation of State 2006 for H
2O Ice Ih, The International Association for the Properties of Water and Steam, Doorwerth, The Netherlands, September 2009, available at: http://www.iapws.org, last access: July 2010, 2009b.
IAPWS: Supplementary Release on a Computationally Efficient Thermodynamic Formulation for Liquid Water for Oceanographic Use, The International Association for the Properties of Water and Steam, Doorwerth, The Netherlands, September 2009,available at: http://www.iapws.org, last access: July 2010, 2009c.
IAPWS: Guideline on an Equation of State for Humid Air in Contact with Seawater and Ice, Consistent with the IAPWS Formulation 2008 for the Thermodynamic Properties of Seawater, The International Association for the Properties of Water and Steam, Niagara Falls, Canada, July 2010, to be adopted, 2008.
IOC, SCOR and IAPSO: The international thermodynamic equation of seawater – 2010: Calculation and use of thermodynamic properties, Intergovernmental Oceanographic Commission, Manuals and Guides No. 56, available from http://www.TEOS-10.org, last access: July 2010, UNESCO, Paris, in press, 196 pp., 2010.
IUPAC: Compendium of Chemical Terminology, 2nd edition, the "Gold Book", compiled by McNaught, A. D. and Wilkinson, A., XML on-line corrected version: http://goldbook.iupac.org, last access: July 2010, (2006-), created by Nic, M., Jirat, J., and Kosata, B., updates compiled by Jenkins, A., ISBN 0-9678550-9-8, Blackwell Scientific Publications, Oxford, https://doi.org/10.1351/goldbook, 1997.
Ivanov, D. Yu.: Critical Behavior of Non-Ideal Systems, Wiley-VCH, 257 pp., 2008.
Jackett, D. R., McDougall, J. M., Feistel, R., Wright, D. G., and Griffies, S. M.: Algorithms for Density, Potential Temperature, Conservative Temperature, and the Freezing Temperature of Seawater, J. Atmos. Ocean. Tech., 23, 1709–1728, 2006.
Jacobson, M. Z.: Fundamentals of Atmospheric Modeling, 2nd Edition, University Press, Cambridge, 2005.
Kurzeja, N., Tielkes, T., and Wagner, W.: The Nearly Classical Behavior of a Pure Fluid on the Critical Isochore Very Near the Critical Point Under the Influence of Gravity, Int. J. Thermophys., 20, 531–561, 1999.
Lemmon, E. W., Jacobsen, R. T., Penoncello, S. G., and Friend, D. G.: Thermodynamic Properties of Air and Mixtures of Nitrogen, Argon and Oxygen From 60 to 2000 K at Pressures to 2000 MPa, J. Phys. Chem. Ref. Data, 29, 331–362, 2000.
Marion, G. M., Millero, F. J., and Feistel, R.: Precipitation of solid phase calcium carbonates and their effect on application of seawater $S_\rm A$-$T$-$P$ models, Ocean Sci., 5, 285–291, https://doi.org/10.5194/os-5-285-2009, 2009.
McDougall, T. J.: Potential enthalpy: A conservative oceanic variable for evaluating heat content and heat fluxes, J. Phys. Oceanogr., 33, 945–963, 2003.
McDougall, T. J., Jackett, D. R., and Millero, F. J.: An algorithm for estimating Absolute Salinity in the global ocean, Ocean Sci. Discuss., 6, 215–242, https://doi.org/10.5194/osd-6-215-2009, 2009.
Millard Jr., R. C.: International Oceanographic Tables Vol. 4, Unesco Techn. Pap., available at: http://unesdoc.unesco.org/images/0007/000763/076307mb.pdf, Mar. Sci., 40, 1–193, 1987.
Millero, F. J., Feistel, R., Wright, D. G., and McDougall, T. J.: The composition of Standard Seawater and the definition of the Reference-Composition Salinity Scale, Deep-Sea Res. Pt. I, 55, 50–72, 2008.
Millero, F. J. and Huang, F.: The density of seawater as a function of salinity (5 to 70 g kg
−1) and temperature (273.15 to 363.15 K), Ocean Sci., 5, 91–100, https://doi.org/10.5194/os-5-91-2009, 2009.
Mohr, P. J., Taylor, B. N., and Newell, D. B.: CODATA recommended values of the fundamental physical constants: 2006, Data available at http://physics.nist.gov/cuu/Constants/index.html, last access: July 2010, Rev. Mod. Phys., 80, 633–730, 2008, also published in J. Phys. Chem. Ref. Data, 37, 1187–1284, 2008.
Picard, A., Davis, R. S., Gläser, M., and Fujii, K.: Revised formula for the density of moist air (CIPM-2007), Metrologia, 45, 149–155, 2008.
Planck, M.: Das chemische Gleichgewicht in verdünnten Lösungen, available at http://www.archive.org/stream/annalenderphysi53unkngoog#page/n151/mode/1up, last access: July 2010, Ann. Phys. Chem., Neue Folge, 34, 139–154, 1888.
Reed, C.: Marine science: Boiling points, Nature, 439, 905–907, 2006.
Safarov, J., Millero, F., Feistel, R., Heintz, A., and Hassel, E.: Thermodynamic properties of standard seawater: extensions to high temperatures and pressures, Ocean Sci., 5, 235–246, https://doi.org/10.5194/os-5-235-2009, 2009.
Shaw, A. N.: The Derivation of Thermodynamical Relations for a Simple System, Phil. T. Roy. Soc. Lond. A, 234, 299–328, 1935.
Sun, H., Feistel, R., Koch, M., and Markoe, A.: New Equations for Density, Entropy, Heat Capacity and Potential Temperature of a Saline Thermal Fluid, Deep-Sea Res. Pt. I, 55, 1304–1310, 2008.
Stanley, H. E.: Introduction to Phase Transitions and Critical Phenomena, Clarendon Press, Oxford, 1971.
von Bezold, W.: Zur Thermodynamik der Atmosphaere, Zweite Mitteilung, Potentielle Temperatur, Verticaler Temperaturgradient, Zusammengesetzte Convection, available at: http://bibliothek.bbaw.de/bibliothek-digital/digitalequellen/schriften/anzeige/index_html?band=10-sitz/1888-2&seite:int=530, last access: July 2010, Sitz. ber. Königl. Preuss. Akad. Wiss. Berlin, 46, 1189–1206, 1888.
von Helmholtz, H.: Über atmosphaerische Bewegungen, available at: http://bibliothek.bbaw.de/bibliothek-digital/digitalequellen/schriften/anzeige/index_html?band=10-sitz/1888-1&seite:int=665, last access: July 2010, Sitz. ber. Königl. Preuss. Akad. Wiss. Berlin, 46, 647–663, 1888.
Wagner, W., and Pru{ß}, A.: The IAPWS formulation 1995 for the thermodynamic properties of ordinary water substance for general and scientific use, J. Phys. Chem. Ref. Data, 31, 387–535, 2002.
WMO: Guide to meteorological instruments and methods of observation, available at: http://www.wmo.int/pages/prog/gcos/documents/gruanmanuals/CIMO/CIMO_Guide-7th_Edition-2008.pdf, last access: July 2010, World Meteorological Organisation, Geneva, 2008.
Wright, D. G., Feistel, R., Reissmann, J. H., Miyagawa, K., Jackett, D. R., Wagner, W., Overhoff, U., Guder, C., Feistel, A., and Marion, G. M.: Numerical implementation and oceanographic application of the thermodynamic potentials of water, vapour, ice, seawater and air - Part 2: The library routines, Ocean Sci. Discuss., 7, 649–708, https://doi.org/10.5194/osd-7-649-2010, 2010.
Wright, D. G., Pawlowicz, R., McDougall, T. J., Feistel, R., and Marion, G. M.: Absolute Salinity, "Density Salinity" and the Reference-Composition Salinity Scale: Present and Future Use in the Seawater Standard TEOS-10, Ocean Sci., submitted, 2010b.