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Machado, A.E.H., Nicodem, D.E., Ruggiero, R., Perez, D.S., and Castellan, A. (2001). The
use of fluorescent probes in the characterization of lignin: The distribution, by energy,
of fluorophores in Eucalyptus grandis lignin. J. Photochem. Photobiol. A: Chem .,
138 , 253-259.
Maie, N., Scully, N.M., Pisani, O., and Jaffe, R. (2007). Composition of protein-like fluoro-
phore of dissolved organic matter in coastal wetland and estuarine systems, Water
Res ., 41 , 563-570.
March, J. (1968). Advanced Organic Chemistry: Reactions, Mechanisms and Structure ,
New York: McGraw Hill, 1098 pp.
Martin, R. and Clarke, G.A. (1978). Fluorescence of benzoic acid in aqueous acidic media.
J. Phys. Chem ., 82 , 81-86.
Mauer, F., Christl, I., and Kretzscmar, R. (2010). Reduction and reoxidation of humic acid:
Influence on spectroscopic properties and proton binding. Environ. Sci. Technol ., 44 ,
5787-5792.
Mayer, L.M, Schick, L.L., and Loder, T.C. (1999). Dissolved fluorescence in two Maine
estuaries, Mar. Chem . 64 , 171-179.
McKnight, D. M. and Aiken, G. R. (1998). Sources and age of aquatic humic substances.
In D. Hessen (Ed.), Aquatic Humic Substances: Ecology and Biogeochemistry (pp.
9-40). Ecological Studies, Vol. 133. New York: Springer-Verlag.
McKnight, D.M., Boyer, E.W., Westerhoff, P.K., Doran, P.T., Kulbe, T., and Anderson, D.T.
(2001). Spectrofluorometric characterization of dissolved organic matter for indica-
tion of precursor material and aromaticity. Limnol. Oceanogr ., 46 , 38-48.
Miller, W. L. (1994). Recent advances in the photochemistry of natural dissolved organic
matter. In G. R. Helz, R. G. Zep, and D. G. Crosby (Eds.), Aquatic and Surface
Photochemistry (pp. 111-127). Ann Arbor, MI: Lewis Publishers.
Miller, M.P., McKnight, D.M., Cory, R.M., Williams, M.W., and Runkel, R.L. (2006).
Hyporheic exchange and fulvic acid redox reactions in an alpine stream/ecosystem,
Colorado Front Range, Environ. Sci. Technol ., 40 , 5943-5949.
Miller, M.P., Simone, B.E., McKnight, D.M., Cory, R.M., Williams, M.W., and Boyer,
E.W. (2010). New light on a dark subject: Comment. Aquat. Sci ., 72 , 269-275.
Min, J., Meng-Xia, X., Dong, Z., Yuan, L., Xiao-Yu, L., and Xing, C. (2004). Spectroscopic
studies on the interaction of cinamic acid and its derivatives with human serum albu-
min. J. Mol. Struct ., 692 , 71-80.
Mishra, B., Barik, A., Priyadarsini, I., and Mohan, H. (2005). Fluorescent spectroscopic
studies on binding of a flavonoid antioxidant quercitin to serum albumins. J. Chem.
Soc ., 117 , 641-647.
Mobed, J.J., Hemmingsen, S.L., Autry, J.L., and McGown, L.B. (1996). Fluorescence char-
acterization of IHSS humic substances: Total luminescence spectra with absorbance
correction, Environ. Sci. Technol ., 30 , 3061-3065.
Moran, M.A. and Covert, J.S. (2003). Photochemically mediated linkages between dis-
solved organic matter and bacterioplankton. In S.E.G. Findlay and R.L. Sinsabaugh
(Eds.), Aquatic Systems: Interactivity of Dissolved Organic Matter (pp. 244-262).
San Diego, CA: Academic Press.
Moreira, P.F., Giestas, L., Yihwa, C., Vautier-Giongo, C., Quina, F.H., Maçanita, A.L., and
Lima, J.C. (2003). Ground- and excited state proton transfer in anthocyanins: From
weak acids to superphotoacids. J. Phys. Chem ., 107 , 4203-4210.
Morel, F.M.M. and Gschwend, P.M. (1987). The role of colloids in the partitioning of sol-
utes in natural waters. In W. Stumm (Ed.), Aquatic Surface Chemistry (pp. 405-422).
New York: John Wiley & Sons.
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