Spencer and Coble
142
Baker, A. (2001). Fluorescence excitation–emission matrix characterization of some sewage impacted rivers. Environ. Sci. Technol., 35(5), 948–953.
Baker, A. (2002). Fluorescence excitation-emission matrix characterization of river waters
impacted by a tissue mill effluent. Environ., Sci. Technol., 36(7), 1377–1382.
Baker, A. and Inverarity, R. (2004). Protein-like fluorescence intensity as a possible tool for
determining river water quality. Hydrol. Process., 18(15), 2927–2945.
Baker, A., Elliott, S., and Lead, J.R. (2007). Effects of filtration and pH perturbation on
freshwater organic matter fluorescence. Chemosphere, 67, 2035–2043.
Belzile, C., Roesler, C.S., Christensen, J.P., Shakhova, N., and Semiletov, I. (2006).
Fluorescence measured using the WETStar DOM fluorometer as a proxy for dissolved
matter absorption. Estuar., Coast. Shelf Sci., 67, 441–449.
Benner, R. and Hedges, J.I. (1993). A test of the accuracy of freshwater DOC measurements by high-temperature catalytic oxidation and UV-promoted persulfate oxidation.
Mar. Chem., 41, 161–165.
Blough, N.V., Zafiriou, O.C., and Bonilla, J. (1993). Optical absorption spectra of waters
from the Orinoco River outflow: Terrestrial input of colored organic matter to the
Caribbean. J. Geophys. Res., 98(C2), 2271–2278.
Bouillon, S., Abril, G., Borges, A.V., Dehairs, F., Govers, G., Hughes, H.J., Merckx, R.,
Meysman, F.J.R., Nyunja, J., Osburn, C., and Middelburg, J.J. (2009). Distribution,
origin and cycling of carbon in the Tana River (Kenya): A dry season basin-scale survey from headwaters to the delta. Biogeosciences, 6(11), 2475–2493.
Chen, R.F. and Gardner, G.B. (2004). High-resolution measurements of chromophoric dissolved organic matter in the Mississippi and Atchafalaya River plume regions. Mar.
Chem., 89(1–4), 103–125.
Chen, W., Westerhoff, P., Leenheer, J.A., and Booksh, K. (2003). Fluorescence excitationemission matrix regional integration to quantify spectra for dissolved organic matter.
Environ. Sci. Technol., 37, 5701–5710.
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., 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.
Cory, R.M., McKnight, D.M., Chin, Y.P., Miller, P., and Jaros, C.L. (2007). Chemical
characteristics of fulvic acids from Arctic surface waters: Microbial contributions and photochemical transformations. J. Geophys. Res.-Biogeosci., 112,
doi:10.1029/2006JG000343.
Cory, R.M., Miller, M.P., McKnight, D.M., Guerard, J.J., and Miller, P.L. (2010). Effect
of instrument-specific response on the analysis of fulvic acid fluorescence spectra.
Limnol. Oceanogr. Methods, 8, 67–78.
Del Castillo, C.E., Coble, P.G., Conmy, R.N., Muller-Karger, F.E., Vanderbloemen, L., and
Vargo, G.A. (2001). Multispectral in situ measurements of organic matter and chlorophyll fluorescence in seawater: Documenting the intrusion of the Mississippi River in
the West Florida Shelf. Limnol. Oceanogr., 46(7), 1836–1843.
Del Vecchio, R. and Blough, N.V. (2002). Photobleaching of chromophoric dissolved organic
matter in natural waters: Kinetics and modeling. Mar. Chem., 78(4): 231–253.
Fellman, J.B., D’Amore, D.V., and Hood, E. (2008). An evaluation of freezing as a preservation technique for analyzing dissolved organic C, N, and P in surface water samples.
Sci. Tot. Environ., 392, 305–312.
Précédent

- 158/408

Suivant