Fluorescence and Dissolved Organic Matter
69
precursors in the Sacremento-San Joaquin River Delta: A geochemical approach. Org.
Geochem., 39, 1302–1318.
Kriško, A., Kveder, M., Pečar, S., and Pifat, G. (2005). A study of caffeine binding to
human serum albumin, Croat. Chem. Acta, 78, 71–77.
Kujawinski, E.B., Longnecker, K., Blough, N.V., Del Vecchio, R., Finlay, L., Kitner, J.B.,
and Giovannoni (2009). Identification of possible markers in marine dissolved organic
matter using ultrahigh resolution mass spectrometry. Geochim. Cosmochim Acta, 73,
4384–4399.
Labieniec, M. and Gabryelak, T. (2006). Interactions of tannic acid and its derivatives
(ellagic and gallic acid) with calf thymus DNA and bovine serum albumin using spectroscopic method. J. Photochem. Photobiol B, 82, 72–78.
Lakowicz, J.R. (2006). Principles of Fluorescence Spectroscopy, 3rd ed. New York:
Springer Science+Business Media, 954 pp.
Larsen, L.G., Aiken, G.R., Harvey, J.W., Noe, G.B., and Crimaldi, J.P. (2010). Using
fluorescence spectroscopy to trace seasonal DOM dynamics, disturbance effects,
and hydrologic transport in the Florida Everglades. J. Geophys. Res., 115,
doi:10.1029/2009JG001140.
Larson, R.A. and Rockwell, A.L., (1980). Fluorescence spectra of water-soluble humic
materials and some potential precursors. Arch. Hydrobiol., 89, 416–425.
Lead, J.R. and Wilkinson, K.J. (2007). Environmental colloids and particles: Current knowledge and future developments. In K.J. Wilkinson and J.R. Lead (Eds.), Environmental
Colloids and Particles – Behaviour, Separation and Characterisation (pp. 1–16).
IUPAC Series on Analystical and Physical Chemistry of Environmental Systems, Vol.
10. Chichester, England: John Wiley & Sons.
Lead, J.R., Wilkinson, K.J., Balnois, E., Cutak, B.J., Larive, C.A., Assemi, S., and Beckett,
R., (2000). Diffusion coefficients and polydispersities of the Suwannee River fulvic acid: Comparison of fluorescence correlation spectroscopy, pulsed field gradient
nuclear magnetic resonance, and field-flow fractionation. Environ. Sci. Technol., 34,
3508–3513.
Leenheer, J.A., Wilson, M.A., and Malcolm, R.L. (1987). Presence and potential significance of aromatic-ketone groups in aquatic humic substances, Org. Geochem., 11,
273–280.
Lehninger, A.L., 1970, Biogeochemistry, New York: Worth, 833 pp.
Liu, X., Tao, S., Deng, N., Liu, Y., Meng, B., Xue, B., and Liu, G. (2006). Synchronousscan fluorescence as a selective detection method for sodiumdodecybenzene-sulfonate
and pyrene in environmental samples. Anal. Chem. Acta, 572, 134–139.
Lundquist, K., Josefsson, B., and Nyquist, G. (1978). Analysis of lignin products by fluorescence spectroscopy. Holzforschung, 32, 27–32.
Ma, J., Del Vecchio, R., Golanoski, K.S., Boyle, E.S., and Blough, N.V. (2010). Optical
properties of humic substances and CDOM: Effects of borohydride reduction. Environ.
Sci. Technol., 44, 5395–5402.
MacCalady, D.L. and Walton- Day, K. (2009). New light on a dark subject: On the use of
fluorescence data to deduce redox states of natural organic matter (NOM). Aquat. Sci.,
71, 135–143.
MacCarthy, P. and Rice, J. A. (1985). Spectroscopic methods (other than NMR) for determining functionality in humic substances. In G. Aiken, D. McKnight, and R. Wershaw
(Eds.), Humic Substances in Soil, Sediment, and Water: Geochemistry, Isolation and
Characterization (pp. 527–559). New York: John Wiley & Sons.
69
precursors in the Sacremento-San Joaquin River Delta: A geochemical approach. Org.
Geochem., 39, 1302–1318.
Kriško, A., Kveder, M., Pečar, S., and Pifat, G. (2005). A study of caffeine binding to
human serum albumin, Croat. Chem. Acta, 78, 71–77.
Kujawinski, E.B., Longnecker, K., Blough, N.V., Del Vecchio, R., Finlay, L., Kitner, J.B.,
and Giovannoni (2009). Identification of possible markers in marine dissolved organic
matter using ultrahigh resolution mass spectrometry. Geochim. Cosmochim Acta, 73,
4384–4399.
Labieniec, M. and Gabryelak, T. (2006). Interactions of tannic acid and its derivatives
(ellagic and gallic acid) with calf thymus DNA and bovine serum albumin using spectroscopic method. J. Photochem. Photobiol B, 82, 72–78.
Lakowicz, J.R. (2006). Principles of Fluorescence Spectroscopy, 3rd ed. New York:
Springer Science+Business Media, 954 pp.
Larsen, L.G., Aiken, G.R., Harvey, J.W., Noe, G.B., and Crimaldi, J.P. (2010). Using
fluorescence spectroscopy to trace seasonal DOM dynamics, disturbance effects,
and hydrologic transport in the Florida Everglades. J. Geophys. Res., 115,
doi:10.1029/2009JG001140.
Larson, R.A. and Rockwell, A.L., (1980). Fluorescence spectra of water-soluble humic
materials and some potential precursors. Arch. Hydrobiol., 89, 416–425.
Lead, J.R. and Wilkinson, K.J. (2007). Environmental colloids and particles: Current knowledge and future developments. In K.J. Wilkinson and J.R. Lead (Eds.), Environmental
Colloids and Particles – Behaviour, Separation and Characterisation (pp. 1–16).
IUPAC Series on Analystical and Physical Chemistry of Environmental Systems, Vol.
10. Chichester, England: John Wiley & Sons.
Lead, J.R., Wilkinson, K.J., Balnois, E., Cutak, B.J., Larive, C.A., Assemi, S., and Beckett,
R., (2000). Diffusion coefficients and polydispersities of the Suwannee River fulvic acid: Comparison of fluorescence correlation spectroscopy, pulsed field gradient
nuclear magnetic resonance, and field-flow fractionation. Environ. Sci. Technol., 34,
3508–3513.
Leenheer, J.A., Wilson, M.A., and Malcolm, R.L. (1987). Presence and potential significance of aromatic-ketone groups in aquatic humic substances, Org. Geochem., 11,
273–280.
Lehninger, A.L., 1970, Biogeochemistry, New York: Worth, 833 pp.
Liu, X., Tao, S., Deng, N., Liu, Y., Meng, B., Xue, B., and Liu, G. (2006). Synchronousscan fluorescence as a selective detection method for sodiumdodecybenzene-sulfonate
and pyrene in environmental samples. Anal. Chem. Acta, 572, 134–139.
Lundquist, K., Josefsson, B., and Nyquist, G. (1978). Analysis of lignin products by fluorescence spectroscopy. Holzforschung, 32, 27–32.
Ma, J., Del Vecchio, R., Golanoski, K.S., Boyle, E.S., and Blough, N.V. (2010). Optical
properties of humic substances and CDOM: Effects of borohydride reduction. Environ.
Sci. Technol., 44, 5395–5402.
MacCalady, D.L. and Walton- Day, K. (2009). New light on a dark subject: On the use of
fluorescence data to deduce redox states of natural organic matter (NOM). Aquat. Sci.,
71, 135–143.
MacCarthy, P. and Rice, J. A. (1985). Spectroscopic methods (other than NMR) for determining functionality in humic substances. In G. Aiken, D. McKnight, and R. Wershaw
(Eds.), Humic Substances in Soil, Sediment, and Water: Geochemistry, Isolation and
Characterization (pp. 527–559). New York: John Wiley & Sons.
