88
Chemical Oceanography, 4th Edition
Carpenter, J.H., and Manella, M.E., Magnesium to chlorinity ratios in sea water, J. Geophys. Res., 78,
3621–3626 (1973).
Cox, R.A., The physical properties of sea water, Chapter 3, Chemical Oceanography, Vol. 1, Riley, J.P.,
and Skirrow, G., Eds., Academic Press, New York, 73–120 (1965).
Cox, R.A., Culkin, F., and Riley, J.P., The electrical conductivity/ chlorinity relationship in natural
sea water, Deep- Sea Res., 14, 203 (1967).
Craig, H., Standard for reporting concentrations of deuterium and oxygen-18 in natural waters,
Science, 133, 1833 (1961).
Culkin, F., The major constituents, Chapter 4, Chemical Oceanography, Vol. 1, Riley, J.P., and Skirrow,
G., Eds., Academic Press, New York, 121–161 (1965).
Culkin, F., and Cox, R.A., Sodium, potassium, magnesium, calcium and strontium in sea water,
Deep- Sea Res., 13, 789 (1966).
Dickson, A.G., Thermodynamics of the dissociation of boric acid in synthetic sea water from 273.15 to
318.15 K, Deep- Sea Res., 37, 755 (1990).
Dittmar, W. Report on the scientific results of the exploring voyage of HMS Challenger. Physics and
Chemistry 1, 1–251. London (1884).
Duce, R.A., SEAREX: the Sea/ Air Exchange program, in Chemical Oceanography, Vol. 10, Riley, J.P.,
Chester, R., and Duce, R.A., Eds., Academic Press, New York, 1–14 (1989).
Forchammer, G. On the composition of seawater in the different parts of the ocean. Philosophical
Transactions 155, 203–262 (1865).
Grasshoff, K., Kremling, K., and Ehrhart, M., Methods of Seawater Analysis, Eds., 3rd ed., Wiley- VCH,
Berlin (1999).
Harvie, C.E., and Weare, J.H., The prediction of mineral solubilities in natural waters: the Na- K-MgCa- Cl- SO 4 -H 2 O system from zero to high concentration at 25°C, Geochim. Cosmochim. Acta, 44,
981 (1980).
Lee, K., Kim, T.-W., Byrne, R.H., Millero, F.J., Feely, R.A., and Liu, Y.-M., The universal ratio of boron
to chlorinity for the North Pacific and North Atlantic oceans, Geochim. Cosmochim. Acta, 74,
1801–1811 (2010).
Lewis, E.L., Salinity: its definition and calculation, J. Geophys. Res., 83, 466 (1978).
Lyman, J., and Fleming, R.H., Composition of sea water, J. Mar. Res., 3, 134–146 (1940).
Kremling, K., Untersuchungen ber die chemische Zusammensetzung de Meerwasser aus Ostsee, I.
Frühjahr, 1966, Kieler Meeresf., 26, 81–104 (1969).
Kremling, K., Untersuchungen über die chemische Zusammensetzung de Meerwasser aus Ostsee, II.
Frühjahr 1967, Kieler Meeresf., 26, 1–20 (1970).
Kremling, K., Untersuchungen über die chemische Zusammensetzung de Meerwasser aus Ostsee,
III. Frühjahr 1969, Kieler Meeresf., 37, 99–118 (1972).
Kremling, K., Determination of major constituents, Chapter 11, Methods of Seawater Analysis, 229–
251, Kiel, Germany (1976).
Menache, M., Verification, par analyse isotopique de la validite de la methode de Cox, McCartney et
Culkin tendant a l’obtention d’un etalon de masse volumique, Deep- Sea Res., 18, 449–456 (1971).
Millero, F.J., The physical chemistry of Baltic Sea waters, Thalassia Jugoslavica, 14, 1 (1978).
Millero, F.J., Chemical Oceanography, 3rd ed., Taylor & Francis, Boca Raton, FL (2006).
Millero, F.J, Graham, T., Huang, F., Bustos, H., and Pierrot, D., Dissociation constants for carbonic
acid in seawater as a function of temperature and salinity, Mar. Chem., 100, 80–94 (2006).
Millero, F.J., Schrager, S.R., and Hansen, L.D., Thermometric titration analysis of sea water for chlorinity, sulfate, and alkalinity, Limnol. Oceanogr., 19, 711 (1974).
Millero, F.J., Zhang, J.Z., Fiol, S., Sotolongo, S., Roy, R.N., Lee, K., and Mane, S., The use of buffers to
measure the pH of sea water, Mar. Chem., 44, 143 (1993).
Millero, F.J., Zhang, J.Z., Lee, K., and Campbell, D.M., Titration alkalinity of sea water, Mar. Chem., 44
153 (1993).
Mojica Prieto, F.J., and Millero, F.J., The values of pK 1 + pK 2 for the dissociation of carbonic acid in
sea water, Geochim. Cosmochim. Acta, 66, 2529 (2002).
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