Geoscience Reference
In-Depth Information
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 chromo-
phoric 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 photo-
bleaching 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 mat-
ter 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 fluores-
cence 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 dis-
solved 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 investi-
gation 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 phytoplank-
ton. Limnol. Oceanogr ., 55 , 446-454.
Search WWH ::




Custom Search