Physicochemical Effects
269
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 during 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 transmission 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 colloids: 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 allochthonous
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 heterotrophic 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 properties 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 colloids: 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 fluorescence 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.
269
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 during 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 transmission 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 colloids: 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 allochthonous
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 heterotrophic 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 properties 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 colloids: 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 fluorescence 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.
