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Cao, Y., Conklin, M., and Betterton, E. (1995). Competitive complexation of trace metals
with dissolved humic acid. Environ. Health Perspect ., 103 , 29-32.
Cilenti, A., Provenzano, M.R., and Senesi, N. (2005). Characterization of dissolved organic
matter from saline soils by fluorescence spectroscopy. Environ. Chem. Lett ., 3 (2),
53-56.
Clark, C.D., Jimenez- Morais, J., Jones, G., Zanardi- Lamardo, E., Moore, C.A., and Zika,
R.G. (2002). A time-resolved fluorescence study of dissolved organic matter in a
riverine to marine transition zone. Mar. Chem ., 78 (2-3), 121-135.
Clark, C.D., Litz, L.P., and Grant, S.B. (2008). Salt marshes as a source of chromophoric
dissolved organic matter (CDOM) to Southern California coastal waters. Limnol.
Oceanogr ., 53 (5), 1923-1933.
Coble, P.G. (1996). Characterization of marine and terrestrial DOM in seawater using exci-
tation emission matrix spectroscopy. Mar. Chem ., 51 (4), 325-346.
Coble, P.G. (2007). Marine optical biogeochemistry: The chemistry of ocean color. Chem.
Rev ., 107 (2), 402-418.
Coble, P.G., Del Castillo, C.E., and Avril, B. (1998). Distribution and optical properties of
CDOM in the Arabian Sea during the 1995 Southwest Monsoon. Deep-Sea Res. Pt.
Ii , 45 (10-11), 2195-2223.
Conmy, R.N., Coble, P.G., Chen, R.F., and Gardner, G.B. (2004). Optical properties of col-
ored dissolved organic matter in the Northern Gulf of Mexico. Mar. Chem ., 89 (1-4),
127-144.
Conmy, R.N., Coble, P.G., Cannizzaro, J.P., and Heil, C.A. (2009). Influence of extreme
storm events on West Florida Shelf CDOM distributions. J. Geophys. Res.Biogeosci .,
114, G00F04, doi:10.1029/2009JG000981
Conte, P. and Piccolo, A. (1999). Conformational arrangement of dissolved humic sub-
stances. Influence of solution composition on association of humic molecules. Environ.
Sci. Technol ., 33 (10), 1682-1690.
Cory, R.M., McNeill, K., Cotner, J.P., Amado, A., Purcell, J.M., and Marshall, A.G. (2010).
Singlet Oxygen in the coupled photochemical and biochemical oxidation of dissolved
organic matter. Environ. Sci. Technol ., 44 (10), 3683-3689.
da Silva, J. and Tauler, R. (2006). Multivariate curve resolution of synchronous fluores-
cence spectra matrices of fulvic acids obtained as a function of pH. Appl. Spectrosc .,
60 (11), 1315-1321.
daSilva, J. and Machado, A. (1996). Characterization of the binding sites for Al(III) and
Be(II) in a sample of marine fulvic acids. Mar. Chem ., 54 (3-4), 293-302.
da Silva, J.C.G., Machado, A., and Oliveira, C.J.S. (1998). Effect of pH on complexation of
Fe(III) with fulvic acids. Environ. Toxicol. Chem ., 17 (7), 1268-1273.
Del Castillo, C.E., Coble, P.G., Morell, J.M., Lopez, J.M., and Corredor, J.E. (1999).
Analysis of the optical properties of the Orinoco River plume by absorption and fluor-
escence spectroscopy. Mar. Chem ., 66 (1-2), 35-51.
DelVecchio, R. and Blough, N.V. (2002). Photobleaching of chromophoric dissolved organic
matter in natural waters: Kinetics and modeling. Mar. Chem ., 78 (4), 231-253.
Del Vecchio, R. and Blough, N.V. (2004). Spatial and seasonal distribution of chromo-
phoric dissolved organic matter and dissolved organic carbon in the Middle Atlantic
Bight. Mar. Chem ., 89 (1-4), 169-187.
Eftink, M. (1991). Fluorescence techniques for studying protein structure. In C. H. Suelter
(Ed.), Methods of Biochemical Analysis: Protein Structure Determination , Vol. 35
(pp. 127-205). Hoboken, NJ: John Wiley & Sons.
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