Physicochemical Effects
275
Osburn, C.L., Zagarese, H.E., Morris, D.P., Hargreaves, B.R., and Cravero, W.E. (2001).
Calculation of spectral weighting functions for the solar photobleaching of chromophoric dissolved organic matter in temperate lakes. Limnol. Oceanogr., 46(6),
1455–1467.
Osburn, C.L., O’Sullivan, D.W., and Boyd, T.J. (2009a). Increases in the longwave photobleaching of chromophoric dissolved organic matter in coastal waters. Limnol.
Oceanogr., 54(1), 145–159.
Osburn, C.L., Retamal, L., and Vincent, W.F. (2009b). Photoreactivity of chromophoric
dissolved organic matter transported by the Mackenzie River to the Beaufort Sea.
Mar. Chem., 115(1–2), 10–20.
Osburn, C.L., Wigdahl, C.R., Fritz, S.C., and Saros, J.E. (2011). Dissolved organic matter composition and photoreactivity in prairie lakes of the US Great Plains. Limnol.
Oceanogr., 56(6), 2371–2390.
O’Sullivan, D.W., Neale, P.J., Coffin, R.B., Boyd, T.J., and Osburn, S.L. (2005).
Photochemical production of hydrogen peroxide and methylhydroperoxide in coastal
waters. Mar. Chem., 97(1–2), 14–33.
Otero, M., Mendonca, A., Valega, M., Santos, E.B.H., Pereira, E., Esteves, V.I., and Duarte,
A. (2007). Fluorescence and DOC contents of estuarine pore waters from colonized
and non-colonized sediments: Effects of sampling preservation. Chemosphere, 67(2),
211–220.
Parlanti, E., Wörz, K., Geoffroy, L., and Lamotte, M. (2000). Dissolved organic matter
fluorescence spectroscopy as a tool to estimate biological activity in a coastal zone
submitted to anthropogenic inputs. Org. Geochem., 31(12), 1765–1781.
Patel-Sorrentino, N., Mounier, S., and Benaim, J.Y. (2002). Excitation–emission fluorescence matrix to study pH influence on organic matter fluorescence in the Amazon
basin rivers. Water Res., 36(10), 2571–2581.
Patsayeva, S.V., Fadeev, V.V., Filippova, E.M., Chubarov, V.V., and Yuzhakov, V.I. (1991).
Temperature and laser ultraviolet radiation influence on luminescence spectra of dissolved organic matter. Vest. Moskov. Universit. Ser. 3 Fizik. Astronom., 32(6), 71–75.
Provenzano, M.R., Cilenti, A., Gigliotti, G., and Senesi, N. (2008). Spectroscopic investigation on hydrophobic and hydrophilic fractions of dissolved organic matter extracted
from soils at different salinities. Clean Soil Air Water, 36(9), 748–753.
Provenzano, M.R., Caricasole, P., Brunetti, G., and Senesi, N. (2010). Dissolved organic
matter extracted with water and a saline solution from different soil profiles. Soil Sci.,
175(6), 255–262.
Psenner, R. (1999). Living in a dusty world: Airborne dust as a key factor for alpine lakes.
Water Air Soil Pollut., 112(3–4), 217–227.
Pullin, M.J. and Cabaniss, S.E. (1997). Physicochemical variations in DOM-synchronous
fluorescence: Implications for mixing studies. Limnol. Oceanogr., 42(8), 1766–1773.
Reche, I., Pace, M.L., and Cole, J.J. (1999). Relationship of trophic and chemical conditions
to photobleaching of dissolved organic matter in lake ecosystems. Biogeochemistry,
44(3), 259–280.
Ritchie, J.D. and Perdue, E.M. (2003). Proton-binding study of standard and reference
fulvic acids, humic acids, and natural organic matter. Geochim. Cosmochim. Acta,
67(1), 85–96.
Romera-Castillo, C., Sarmento, H., Alvarez- Salgado, X.A., Gasol, J.M., and Marrase, C.
(2010). Production of chromophoric dissolved organic matter by marine phytoplankton. Limnol. Oceanogr., 55, 446–454.
275
Osburn, C.L., Zagarese, H.E., Morris, D.P., Hargreaves, B.R., and Cravero, W.E. (2001).
Calculation of spectral weighting functions for the solar photobleaching of chromophoric dissolved organic matter in temperate lakes. Limnol. Oceanogr., 46(6),
1455–1467.
Osburn, C.L., O’Sullivan, D.W., and Boyd, T.J. (2009a). Increases in the longwave photobleaching of chromophoric dissolved organic matter in coastal waters. Limnol.
Oceanogr., 54(1), 145–159.
Osburn, C.L., Retamal, L., and Vincent, W.F. (2009b). Photoreactivity of chromophoric
dissolved organic matter transported by the Mackenzie River to the Beaufort Sea.
Mar. Chem., 115(1–2), 10–20.
Osburn, C.L., Wigdahl, C.R., Fritz, S.C., and Saros, J.E. (2011). Dissolved organic matter composition and photoreactivity in prairie lakes of the US Great Plains. Limnol.
Oceanogr., 56(6), 2371–2390.
O’Sullivan, D.W., Neale, P.J., Coffin, R.B., Boyd, T.J., and Osburn, S.L. (2005).
Photochemical production of hydrogen peroxide and methylhydroperoxide in coastal
waters. Mar. Chem., 97(1–2), 14–33.
Otero, M., Mendonca, A., Valega, M., Santos, E.B.H., Pereira, E., Esteves, V.I., and Duarte,
A. (2007). Fluorescence and DOC contents of estuarine pore waters from colonized
and non-colonized sediments: Effects of sampling preservation. Chemosphere, 67(2),
211–220.
Parlanti, E., Wörz, K., Geoffroy, L., and Lamotte, M. (2000). Dissolved organic matter
fluorescence spectroscopy as a tool to estimate biological activity in a coastal zone
submitted to anthropogenic inputs. Org. Geochem., 31(12), 1765–1781.
Patel-Sorrentino, N., Mounier, S., and Benaim, J.Y. (2002). Excitation–emission fluorescence matrix to study pH influence on organic matter fluorescence in the Amazon
basin rivers. Water Res., 36(10), 2571–2581.
Patsayeva, S.V., Fadeev, V.V., Filippova, E.M., Chubarov, V.V., and Yuzhakov, V.I. (1991).
Temperature and laser ultraviolet radiation influence on luminescence spectra of dissolved organic matter. Vest. Moskov. Universit. Ser. 3 Fizik. Astronom., 32(6), 71–75.
Provenzano, M.R., Cilenti, A., Gigliotti, G., and Senesi, N. (2008). Spectroscopic investigation on hydrophobic and hydrophilic fractions of dissolved organic matter extracted
from soils at different salinities. Clean Soil Air Water, 36(9), 748–753.
Provenzano, M.R., Caricasole, P., Brunetti, G., and Senesi, N. (2010). Dissolved organic
matter extracted with water and a saline solution from different soil profiles. Soil Sci.,
175(6), 255–262.
Psenner, R. (1999). Living in a dusty world: Airborne dust as a key factor for alpine lakes.
Water Air Soil Pollut., 112(3–4), 217–227.
Pullin, M.J. and Cabaniss, S.E. (1997). Physicochemical variations in DOM-synchronous
fluorescence: Implications for mixing studies. Limnol. Oceanogr., 42(8), 1766–1773.
Reche, I., Pace, M.L., and Cole, J.J. (1999). Relationship of trophic and chemical conditions
to photobleaching of dissolved organic matter in lake ecosystems. Biogeochemistry,
44(3), 259–280.
Ritchie, J.D. and Perdue, E.M. (2003). Proton-binding study of standard and reference
fulvic acids, humic acids, and natural organic matter. Geochim. Cosmochim. Acta,
67(1), 85–96.
Romera-Castillo, C., Sarmento, H., Alvarez- Salgado, X.A., Gasol, J.M., and Marrase, C.
(2010). Production of chromophoric dissolved organic matter by marine phytoplankton. Limnol. Oceanogr., 55, 446–454.
