Physicochemical Effects
271
Elkins, K.M. and Nelson, D.J. (2001). Fluorescence and FT-IR spectroscopic studies of
Suwannee river fulvic acid complexation with aluminum, terbium and calcium. J.
Inorg. Biochem., 87(1–2), 81–96.
Elkins, K.M. and Nelson, D.J. (2002). Spectroscopic approaches to the study of the interaction of aluminum with humic substances. Coord, Chem. Rev., 228(2), 205–225.
Esteves, V.I., Santos, E.B.H., and Duarte, A.C. (1999). Study of the effect of pH, salinity
and DOC on fluorescence of synthetic mixtures of freshwater and marine salts. J.
Environ. Monit., 1(3), 251–254.
Floge, S.A. and Wells, M.L. (2007). Variation in colloidal chromophoric dissolved organic
matter in the Damariscotta Estuary, Maine. Limnol. Oceanogr., 52(1), 32–45.
Fox, L.E. (1983). The removal of dissolved humic acid during estuarine mixing. Estuar.
Coast. Shelf Sci., 16(4), 431–440.
Francko, D.A. and Heath, R.T. (1982). UV-sensitive complex phosphorus: Association with
dissolved humic material and iron in a bog lake. Limnol. Oceanogr., 27(3), 564–569.
Fu, P.Q., Wu, F.C., Liu, C.Q., Wang, F.Y., Li, W., Yue, L.X., and Guo, Q.J. (2007).
Fluorescence characterization of dissolved organic matter in an urban river and its
complexation with Hg(II). Appl. Geochem., 22(8), 1668–1679.
Gennings, C., Molot, L.A., and Dillon, P.J. (2001). Enhanced photochemical loss of organic
carbon in acidic waters. Biogeochemistry, 52(3), 339–354.
Ghosh, K. and Schnitzer, M. (1979). UV and visible absorption spectroscopic investigations in relation to macromolecular characteristics of humic substances. J. Soil Sci.,
30(4), 735–745.
Ghosh, K. and Schnitzer, M. (1980). Macromolecular structures of humic substances. Soil
Sci., 129(5), 266–276.
Gibson, J.A.E., Vincent, W.F., and Pienitz, R. (2001). Hydrologic control and diurnal photobleaching of CDOM in a subarctic lake. Arch. Hydrobiol., 152(1), 143–159.
Goldstone, J.V., Del Vecchio, R., Blough, N.V., and Voelker, B.M. (2004). A multicomponent model of chromophoric dissolved organic matter photobleaching. Photochem.
Photobiol., 80(1), 52–60.
Gone, D.L., Seidel, J.L., Batiot, C., Bamory, K., Ligban, R., and Biemi, J. (2009). Using
fluorescence spectroscopy EEM to evaluate the efficiency of organic matter removal
during coagulation-flocculation of a tropical surface water (Agbo reservoir). J. Hazard.
Mater., 172(2–3), 693–699.
Gonsior, M., Peake, B.M., Cooper, W.T., Podgorski, D., D’Andrilli, J., and Cooper, W.J.
(2009). Photochemically induced changes in dissolved organic matter identified by
ultrahigh resolution Fourier transform ion cyclotron resonance mass spectrometry.
Environ. Sci. Technol., 43(3), 698–703.
Graber, E.R. and Rudich, Y. (2006). Atmospheric HULIS: How humic-like are they? A
comprehensive and critical review. Atmos. Chem. Phys., 6, 729–753.
Grebel, J.E., Pignatello, J.J., Song, W.H., Cooper, W.J., and Mitch, W.A. (2009). Impact
of halides on the photobleaching of dissolved organic matter. Mar. Chem., 115(1–2),
134–144.
Green, S.A., Morel, F.M.M., and Blough, N.V. (1992). Investigation of the electrostatic
properties of humic substances by fluorescence quenching. Environ. Sci. Technol.,
26(2), 294–302.
Gueguen, C., Guo, L.D., Yamamoto-Kawai, M., and Tanaka, N. (2007). Colored dissolved
organic matter dynamics across the shelf-basin interface in the western Arctic Ocean.
J. Geophys. Res. Oceans, 112, C05038, doi:10.1029/2006JC003584.
271
Elkins, K.M. and Nelson, D.J. (2001). Fluorescence and FT-IR spectroscopic studies of
Suwannee river fulvic acid complexation with aluminum, terbium and calcium. J.
Inorg. Biochem., 87(1–2), 81–96.
Elkins, K.M. and Nelson, D.J. (2002). Spectroscopic approaches to the study of the interaction of aluminum with humic substances. Coord, Chem. Rev., 228(2), 205–225.
Esteves, V.I., Santos, E.B.H., and Duarte, A.C. (1999). Study of the effect of pH, salinity
and DOC on fluorescence of synthetic mixtures of freshwater and marine salts. J.
Environ. Monit., 1(3), 251–254.
Floge, S.A. and Wells, M.L. (2007). Variation in colloidal chromophoric dissolved organic
matter in the Damariscotta Estuary, Maine. Limnol. Oceanogr., 52(1), 32–45.
Fox, L.E. (1983). The removal of dissolved humic acid during estuarine mixing. Estuar.
Coast. Shelf Sci., 16(4), 431–440.
Francko, D.A. and Heath, R.T. (1982). UV-sensitive complex phosphorus: Association with
dissolved humic material and iron in a bog lake. Limnol. Oceanogr., 27(3), 564–569.
Fu, P.Q., Wu, F.C., Liu, C.Q., Wang, F.Y., Li, W., Yue, L.X., and Guo, Q.J. (2007).
Fluorescence characterization of dissolved organic matter in an urban river and its
complexation with Hg(II). Appl. Geochem., 22(8), 1668–1679.
Gennings, C., Molot, L.A., and Dillon, P.J. (2001). Enhanced photochemical loss of organic
carbon in acidic waters. Biogeochemistry, 52(3), 339–354.
Ghosh, K. and Schnitzer, M. (1979). UV and visible absorption spectroscopic investigations in relation to macromolecular characteristics of humic substances. J. Soil Sci.,
30(4), 735–745.
Ghosh, K. and Schnitzer, M. (1980). Macromolecular structures of humic substances. Soil
Sci., 129(5), 266–276.
Gibson, J.A.E., Vincent, W.F., and Pienitz, R. (2001). Hydrologic control and diurnal photobleaching of CDOM in a subarctic lake. Arch. Hydrobiol., 152(1), 143–159.
Goldstone, J.V., Del Vecchio, R., Blough, N.V., and Voelker, B.M. (2004). A multicomponent model of chromophoric dissolved organic matter photobleaching. Photochem.
Photobiol., 80(1), 52–60.
Gone, D.L., Seidel, J.L., Batiot, C., Bamory, K., Ligban, R., and Biemi, J. (2009). Using
fluorescence spectroscopy EEM to evaluate the efficiency of organic matter removal
during coagulation-flocculation of a tropical surface water (Agbo reservoir). J. Hazard.
Mater., 172(2–3), 693–699.
Gonsior, M., Peake, B.M., Cooper, W.T., Podgorski, D., D’Andrilli, J., and Cooper, W.J.
(2009). Photochemically induced changes in dissolved organic matter identified by
ultrahigh resolution Fourier transform ion cyclotron resonance mass spectrometry.
Environ. Sci. Technol., 43(3), 698–703.
Graber, E.R. and Rudich, Y. (2006). Atmospheric HULIS: How humic-like are they? A
comprehensive and critical review. Atmos. Chem. Phys., 6, 729–753.
Grebel, J.E., Pignatello, J.J., Song, W.H., Cooper, W.J., and Mitch, W.A. (2009). Impact
of halides on the photobleaching of dissolved organic matter. Mar. Chem., 115(1–2),
134–144.
Green, S.A., Morel, F.M.M., and Blough, N.V. (1992). Investigation of the electrostatic
properties of humic substances by fluorescence quenching. Environ. Sci. Technol.,
26(2), 294–302.
Gueguen, C., Guo, L.D., Yamamoto-Kawai, M., and Tanaka, N. (2007). Colored dissolved
organic matter dynamics across the shelf-basin interface in the western Arctic Ocean.
J. Geophys. Res. Oceans, 112, C05038, doi:10.1029/2006JC003584.
