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Belzile, C., Johannessen, S.C., Gosselin, M., Demers, S., and Miller, W.L. (2000).
Ultraviolet attenuation by dissolved and particulate constituents of first-year ice dur-
ing late spring in an Arctic polynya. Limnol. Oceanogr ., 45 (6), 1265-1273.
Belzile, C., Gibson, J.A.E., and Vincent, W.F. (2002). Colored dissolved organic matter and
dissolved organic carbon exclusion from lake ice: Implications for irradiance trans-
mission and carbon cycling. Limnol. Oceanogr ., 47 (5), 1283-1293.
Benner, R. (2002). Chemical composition and reactivity. In D. A. Hansell and C.A. Carlson
(Eds.), Biogeochemistry of Marine Dissolved Organic Matter (pp. 59-90). San Diego:
Academic Press.
Benner, R., Pakulski, J.D., McCarthy, M., Hedges, J.I., and Hatcher, P.G. (1992). Bulk
chemical characteristics of dissolved organic matter in the ocean. Science , 255 (5051),
1561-1564.
Biers, E.J., Zepp, R.G., and Moran, M.A. (2007). The role of nitrogen in chromophoric and
fluorescent dissolved organic matter formation. Mar. Chem ., 103 (1-2), 46-60.
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.
Boehme, J. and Wells, M. (2006). Fluorescence variability of marine and terrestrial col-
loids: Examining size fractions of chromophoric dissolved organic matter in the
Damariscotta River estuary. Mar. Chem ., 101 (1-2), 95-103.
Boehme, J.R. and Coble, P.G. (2000). Characterization of colored dissolved organic matter
using high-energy laser fragmentation. Environ. Sci. Technol ., 34 (15), 3283-3290.
Boyd, T.J. and Osburn, C.L. (2004). Changes in CDOM fluorescence from allochthon-
ous and autochthonous sources during tidal mixing and bacterial degradation in two
coastal estuaries. Mar. Chem ., 89 (1-4), 189-210.
Boyd, T.J., Wolgast, D.M., Rivera- Duarte, I., Holm- Hansen, O., Hewes, C.D., Zirino, A.,
and Chadwick, D.B. (2005). Effects of dissolved and complexed copper on hetero-
trophic bacterial production in San Diego Bay. Microb. Ecol ., 49 (3), 353-366.
Boyd, T.J., Barham, B.P., Hall, G.J., and Osburn, C.L. (2010a). Variation in ultrafiltered
and LMW organic matter fluorescence properties under simulated estuarine mixing
transects: 1. Mixing alone . J. Geophys. Res ., 115 , G00F13.
Boyd, T.J., Barham, B.P., Hall, G.J., Schumann, B.S., Paerl, R.W., and Osburn, C.L.
(2010b). Variation in ultrafiltered and LMW organic matter fluorescence proper-
ties under simulated estuarine mixing transects: 2. Mixing with photoexposure. J.
Geophys. Res ., 115 , G00F14.
Buesseler, K.O. Bauer, J. E., Chen, R. F., Eglinton, T. I., Gustafsson, O., Landing, W.,
Mopper, K., Moran, S.B., Santschi, P.H., Vernon-Clark, R. and Wells, M.L. (1996).
An intercomparison of cross-flow filtration techniques used for sampling marine col-
loids: Overview and organic carbon results. Mar. Chem ., 55 (1-2), 1-31.
Cabaniss, S.E. and Shuman, M.S. (1986). Combined ion-selective electrode and fluo-
rescence quenching detection for copper-dissolved organic matter titrations. Anal.
Chem ., 58 (2), 398-401.
Cabaniss, S.E. and Shuman, M.S. (1987). Synchronous fluorescence spectra of natural
waters: Tracing sources of dissolved organic matter. Mar. Chem ., 21 (1), 37-50.
Cabaniss, S.E. and Shuman, M.S. (1988). Copper binding by dissolved organic matter: I.
Suwannee River fulvic acid equilibria. Geochim. Cosmochim. Acta , 52 (1), 185-193.
Cabaniss, S.E. (1992). Synchronous fluorescence spectra of metal-fulvic acid complexes.
Environ . Sci. Technol ., 26 (6), 1133-1139.
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