332
Chemical Oceanography, 4th Edition
Orr, J.C., et al., Anthropogenic ocean acidification over the twenty- first century and its impact on
calcifying organisms, Nature, 437(7059), 681–686 (2005).
Park, K., Oceanic CO 2 system: an evaluation of ten methods of investigation, Limnol. Oceanogr., 14,
179 (1969).
Peng, T., and Wanninkhof, R., Increase in anthropogenic CO 2 in the Atlantic Ocean in the last two
decades, Deep- Sea Res. Pt. I: Oceanogr. Res. Papers, 57(6), 755–770 (2010).
Peterson, M.N., Calcite: rates of dissolution in a vertical profile in Central Pacific, Science, 154, 1542 (1966).
Pierrot, D., Lewis, E., and Wallace, D.W.R., MS Excel Program Developed for CO 2 System Calculations,
Rep. ORNL/ CDIAC-105a, Carbon Dioxide Information Analysis Center, Oak Ridge National
Laboratory, U.S. Department of Energy, Oak Ridge, TN (2006).
Quay, P.D., Tilbrook, B., and Wong, C.S., Oceanic uptake of fossil fuel CO 2 : carbon 13 evidence,
Science, 256, 74 (1992).
Redfield, A.C., et al., The influence of organisms on the composition of sea- water, in The Sea, Hill,
M.N., Ed., Wiley- Interscience, New York, 26–77 (1963).
Riebesell, U., et al., Reduced calcification of marine plankton in response to increased atmospheric
CO 2 , Nature, 407(6802), 364–367 (2000).
Royal Society, Ocean Acidification due to Increasing Atmospheric Carbon Dioxide, Royal Society, London (2005).
Sabine, C.L., et al., Anthropogenic CO 2 inventory of the Indian Ocean, global and biogeochemical
cycles, Global Biogeochem. Cycles, 13(1), 179–198 (1999).
Sabine, C.L., et al., Distribution of anthropogenic CO 2 in the Pacific, Global Biogeochem. Cycles, 16,
1083 (2002).
Sabine, C.L., et al., The oceanic sink for anthropogenic CO 2 , Science, 305, 367–371 (2004).
Sabine, C.L., et al., Decadal changes in Pacific carbon, J. Geophys. Res., 113, C07021 (2008).
Sarmiento, J.L., Ocean carbon cycle, Chem. Eng. News, May 31, 30–43 (1993).
Service, R.F., Rising acidity brings an ocean of trouble, Science, 337, 146–148 (2012).
Shi et al., Effects of pH/pCO 2 control method on medium, Biogeoscience, 6, 1199–1207 (2009).
Skirrow, G., The dissolved gases—carbon dioxide, Chapter 9, Chemical Oceanography, Vol. 2, 2nd ed.,
Riley, J.P., and Skirrow, G., Eds., Academic Press, New York, 1–192 (1975).
Smith, E.K., et al., Predominance of heavily calcified Coccolithophores at low CaCO 3 saturation
during winter in the Bay of Biscay, Proceedings Natl. Acad. Sci. , doi/10.1073/pnas.1117508109
(2012).
Solomon, S., et al., Contribution of Working Group 1 to the Fourth Assessment Report of the Intergovernmental
Panel on Climate Change, Cambridge University Press, Cambridge, UK (2007).
Takahashi, T., et al., Net air–sea CO 2 flux over global oceans: an improved estimate based on sea–air
pCO 2 differences, in Proceedings of Second International Symposium on CO 2 in the Oceans, CGER1037-99, 9–15, CGER/ NIES, Tsukuba, Japan (1999).
Tans, P.P., et al., Observation constraints on the global atmospheric CO 2 budget, Science, 247, 1431 (1990).
van Heuven, S., et al., MATLAB Program Developed for CO 2 System Calculations, Carbon Dioxide
Information Analysis Center, Oak Ridge National Laboratory, U.S. Department of Energy, Oak
Ridge, TN (2011).
Wallace, D.W.R., Storage and transport of excess CO 2 in the oceans: the JGOFS/ WOCE Global CO2
survey in Ocean Circulation and Climate, Siedler, G., Church, J., and Gould, W.J., Eds., Academic
Press, San Diego, CA, 489–521 (2001).
Waters, J., and Millero, F.J., The free proton concentration scale for seawater pH (2011).
Waters, J., Millero, F.J., and Sabine, C.L., Synthesis and analysis of the carbonate parameters in the
Pacific Ocean, Global Biogeochem. Cycles, 25 (2011).
Weiss, R., Carbon dioxide in water and seawater, the solubility of a non- ideal gas, Mar. Chem., 2, 203
(1974).
Weiss, R., Determinations of carbon dioxide and methane by dual catalyst flame ionization chromatography and nitrous oxide by electron capture chromatography, J. Chromatogr. Sci., 19, 611
(1981).
Wilson, R.W., et al., Contribution of fish to the marine inorganic carbon cycle, Science, 323, 359–362 (2009).
Précédent

- 353/594

Suivant