226
Chemical Oceanography, 4th Edition
Chameides, W.L., and Davis, D.D., Chemistry in the troposphere, Chem. Eng. News, Oct. 4, 36–52 (1982).
Evan, A.T., Kossin, J.P., Chul, E.C., and Ramanathan, V., Arabian Sea tropical cyclones intensified by
emissions of black carbon and other aerosols, Nature, 479, 94–97 (2011).
Gruber, N., Warming up, turning sour, losing breath: ocean biogeochemistry under global change,
Phil. Trans. R. Soc., A369, 1980–1996 (2011).
Jacoby, M., Ever- cleaner auto exhaust, Chem. Eng. News, May 21, 10–16 (2012).
Johnson, R.W., and Gordon, G.E., The Chemistry of Acid Rain, ACS Symp. 349, ACS, Washington, DC
(1987).
Keeling, C.D., and Whorf, T.P., Atmospheric Carbon Dioxide (CO 2 ) Records from Sites in the SIO Air
Sampling Network (1957-2002), in CDIAC in Trends: A Compendium of Data on Global Change,
Carbon Dioxide Information Analysis Center, Oak Ridge, TN (2004).
Le Roux, V., Dasgupta, R., and Lee, C.-T. A. Mineralogical heterogeneities in the Earth’s mantle: constraints from Mn, Co, Ni and Zn partitioning during partial melting. Earth and Planetary Science
Letters, 307, 395–408 (2011).
Losno, R., Bergametti, G.,Carlier, P., and Mouvier, G., Major ions in marine rainwater with attention
to sources of alkaline and acidic species. Atm. Environ., 25A, 3/4, 763–770 (1991).
Muhs, D.R., Budahn, J.R., Skipp, G., Prospero, J.M., and Herwitz, S.R., Soil genesis on the island
of Bermuda in the Quaternary: the importance of African dust transport and deposition,
J. Geophys. Res.–Earth Surface, doi:10.1029/2012JF002366 (2012).
Novelli, P., Masarie, K., Tans, P., and Lang, P., Recent changes in atmospheric carbon monoxide,
Science, 263, 1587 (1994).
Prospero, J.M., Long- term measurements of the transport of African mineral dust to the southeastern
United States: implications for regional air quality, J. Geophys. Res., 104, 15,917–15,927 (1999).
Prospero, J.M., Ginoux, P., Torres, O., Nicholson, S.E., and Gill, T.E., Environmental characterization
of global sources of atmospheric soil dust identified with the Nimbus 7 total ozone mapping
spectrometer (TOMS) absorbing aerosol product, Rev. Geophys., 40, 1002 (2002).
Saltzman, E.S., and Cooper, W.J., Biogenic Sulfur in the Environment, ACS Symp. Series, 393, ACS,
Washington, DC (1989).
Saltzman, E.S., Whug, P.Y., and Mayewski, P.A., Methanesulfonate in the Greenland ice sheet Project
2 ice core, J. Geophys. Res., 102, 26649 (1997).
Seinfeld, J.H., Atmospheric Chemistry and Physics of Air Pollution, Wiley, New York (1986).
Sholkovitz et al., Fractional solubility of aerosol iron: synthesis of a global-scale data set, Geochim.
Cosmochim. Acta, 89, 173–189 (2012).
Solomon, S., and Ravishankara, A.R., Ozone depletion and global warming potential of CF 3 I,
J. Geophys. Res., 99, 20929 (1994).
Trapp, J.M., Millero, F.J., and Prospero, J.M., Trends in the solubility of iron in dust- dominated aerosols in the equatorial Atlantic trade winds: importance of iron speciation and sources, Geochem.
Geophys. Geosyst., 11, Q01034 (2000).
Trapp, J.M., Millero, F.J., and Prospero, J.M., Temporal variability of the elemental composition of African
dust measured in trade wind aerosols at Barbados and Miami, Mar. Chem., 120, 71–82 (2010).
Chemical Oceanography, 4th Edition
Chameides, W.L., and Davis, D.D., Chemistry in the troposphere, Chem. Eng. News, Oct. 4, 36–52 (1982).
Evan, A.T., Kossin, J.P., Chul, E.C., and Ramanathan, V., Arabian Sea tropical cyclones intensified by
emissions of black carbon and other aerosols, Nature, 479, 94–97 (2011).
Gruber, N., Warming up, turning sour, losing breath: ocean biogeochemistry under global change,
Phil. Trans. R. Soc., A369, 1980–1996 (2011).
Jacoby, M., Ever- cleaner auto exhaust, Chem. Eng. News, May 21, 10–16 (2012).
Johnson, R.W., and Gordon, G.E., The Chemistry of Acid Rain, ACS Symp. 349, ACS, Washington, DC
(1987).
Keeling, C.D., and Whorf, T.P., Atmospheric Carbon Dioxide (CO 2 ) Records from Sites in the SIO Air
Sampling Network (1957-2002), in CDIAC in Trends: A Compendium of Data on Global Change,
Carbon Dioxide Information Analysis Center, Oak Ridge, TN (2004).
Le Roux, V., Dasgupta, R., and Lee, C.-T. A. Mineralogical heterogeneities in the Earth’s mantle: constraints from Mn, Co, Ni and Zn partitioning during partial melting. Earth and Planetary Science
Letters, 307, 395–408 (2011).
Losno, R., Bergametti, G.,Carlier, P., and Mouvier, G., Major ions in marine rainwater with attention
to sources of alkaline and acidic species. Atm. Environ., 25A, 3/4, 763–770 (1991).
Muhs, D.R., Budahn, J.R., Skipp, G., Prospero, J.M., and Herwitz, S.R., Soil genesis on the island
of Bermuda in the Quaternary: the importance of African dust transport and deposition,
J. Geophys. Res.–Earth Surface, doi:10.1029/2012JF002366 (2012).
Novelli, P., Masarie, K., Tans, P., and Lang, P., Recent changes in atmospheric carbon monoxide,
Science, 263, 1587 (1994).
Prospero, J.M., Long- term measurements of the transport of African mineral dust to the southeastern
United States: implications for regional air quality, J. Geophys. Res., 104, 15,917–15,927 (1999).
Prospero, J.M., Ginoux, P., Torres, O., Nicholson, S.E., and Gill, T.E., Environmental characterization
of global sources of atmospheric soil dust identified with the Nimbus 7 total ozone mapping
spectrometer (TOMS) absorbing aerosol product, Rev. Geophys., 40, 1002 (2002).
Saltzman, E.S., and Cooper, W.J., Biogenic Sulfur in the Environment, ACS Symp. Series, 393, ACS,
Washington, DC (1989).
Saltzman, E.S., Whug, P.Y., and Mayewski, P.A., Methanesulfonate in the Greenland ice sheet Project
2 ice core, J. Geophys. Res., 102, 26649 (1997).
Seinfeld, J.H., Atmospheric Chemistry and Physics of Air Pollution, Wiley, New York (1986).
Sholkovitz et al., Fractional solubility of aerosol iron: synthesis of a global-scale data set, Geochim.
Cosmochim. Acta, 89, 173–189 (2012).
Solomon, S., and Ravishankara, A.R., Ozone depletion and global warming potential of CF 3 I,
J. Geophys. Res., 99, 20929 (1994).
Trapp, J.M., Millero, F.J., and Prospero, J.M., Trends in the solubility of iron in dust- dominated aerosols in the equatorial Atlantic trade winds: importance of iron speciation and sources, Geochem.
Geophys. Geosyst., 11, Q01034 (2000).
Trapp, J.M., Millero, F.J., and Prospero, J.M., Temporal variability of the elemental composition of African
dust measured in trade wind aerosols at Barbados and Miami, Mar. Chem., 120, 71–82 (2010).
