Aiken
64
Aiken, G.R., McKnight, D.M., Wershaw, R.L., and MacCarthy, P., Eds. (1985). Humic
Substances in Soil, Sediment, and Water, Geochemistry, Isolation, and Characterization.
New York: John Wiley & Sons, 692 pp.
Aiken, G.R., McKnight, D.M., Thorn, K.A., and Thurman, E.M. (1992). Isolation
of hydrophilic acids from water using macroporous resins. Org. Geochem., 18,
567–573.
Albinsson, B., Li, S., Lundquist, K., and Stomberg, R. (1999). The origin of lignin fluorescence. J. Mol. Struct., 508, 19–27.
Ale, R., Olives, E., Martin, L., Matin, M.A., del Castillo, B., Agnese, A.M., Ortega, M.G.,
Nuñez-Montoya, S., and Cabrera, J.L. (2002). Study of the solvatochromic effect on
natural phenolic compounds. Ars Pharmaceutica, 43, 57–71.
Almgren, T., Josefsson, B., and Nyquist, G. (1975). A fluorescence method for the studies of spent sulfite liquor and humic substances in seawater. Anal. Chim. Acta., 78,
411–421.
Backhus, D.A. and Gschwend, P.M. (1990). Fluorescent polycyclic aromatic hydrocarbons
as probes for studying the impact of colloids on pollutant transport in groundwater.
Environ. Sci. Technol., 24, 1214–1223.
Backhus, D.A., Golini, C., and Castellanos, E. (2003). Evaluation of fluorescence quenching for assessing the importance of interactions between nonpolar organic pollutants
and dissolved organic matter. Environ. Sci. Technol., 37, 4717–4723.
Baker, A. (2001). Fluorescence excitation-emission matrix characterization of some sewage-impacted rivers. Environ. Sci. Technol., 35, 948–953.
Baker, A. (2005). Thermal fluorescence quenching properties of dissolved organic matter.
Water Res., 39, 4405–4412.
Barsberg, S., Elder, T., and Felby, C. (2003). Lignin-quinone interactions: Implications for
optical properties of lignin. Chem. Mater., 15, 649–655.
Berman, T. (1972). Profiles of chlorophyll concentrations by in vivo fluorescence: Some
limnological applications. Limnol. Oceanogr., 17, 616–618.
Bian, H., Zhang, H., Yu, Qing, Chen, Z., and Liang, H. (2007). Studies of the interaction of
cinnamic acid with bovine serum albumin. Chem. Pharm. Bull., 55, 871–875.
Blaser, P. and Sposito, G. (1987). Spectrofluorometric investigation of trace metal complexation by an aqueous chestnut leaf litter extract. Soil Sci. Soc. Am. J., 51, 612–619.
Blough, N. and Del Vecchio, R. (2002). Chromophoric DOM in the coastal environment. In
D.A. Hansell and C.A. Carlson (Eds.), Biogeochemistry of Marine Dissolved Organic
Matter (pp. 509–546). San Diego, CA: Academic Press.
Boerjan, W., Ralph, J., and Baucher, M. (2003). Lignin biosynthesis. Annu. Rev. Plant
Biol., 54, 519–546.
Bonerz, D.P.M., Nikfardjam, M.S.P., and Creasy, G.L. (2008). A new RP-HPLC method
for the analysis of polyphenols, anthcyanins, and indole-3-acetic acid in wine. Am. J.
Enol. Vitic., 59, 106–109.
Boulton, R. (2001). The copigmentation of anthocyanins and its role in the color of red
wine: A critical review. Am. J. Enol. Vitic., 52, 67–87.
Boyle, E.R., Guerriero, N., Thiallet, A., Del Vecchio, R., and Blough, N. (2009). Optical
properties of humic substances and CDOM: Relation to structure. Environ. Sci.
Technol., 43, 2262–2268.
Braslavsky, S.E. (2007). Glossary of terms used in photochemistry. IUPAC Recommendations,
3rd ed., Pure Appl. Chem., 79, 293–465.
Brown, B.A., McColl, J.G., and Driscoll, C.T. (1990). Aluminum speciation using morin: I.
Morin and its complexes with aluminum. J. Environ. Qual., 19, 65–72.
64
Aiken, G.R., McKnight, D.M., Wershaw, R.L., and MacCarthy, P., Eds. (1985). Humic
Substances in Soil, Sediment, and Water, Geochemistry, Isolation, and Characterization.
New York: John Wiley & Sons, 692 pp.
Aiken, G.R., McKnight, D.M., Thorn, K.A., and Thurman, E.M. (1992). Isolation
of hydrophilic acids from water using macroporous resins. Org. Geochem., 18,
567–573.
Albinsson, B., Li, S., Lundquist, K., and Stomberg, R. (1999). The origin of lignin fluorescence. J. Mol. Struct., 508, 19–27.
Ale, R., Olives, E., Martin, L., Matin, M.A., del Castillo, B., Agnese, A.M., Ortega, M.G.,
Nuñez-Montoya, S., and Cabrera, J.L. (2002). Study of the solvatochromic effect on
natural phenolic compounds. Ars Pharmaceutica, 43, 57–71.
Almgren, T., Josefsson, B., and Nyquist, G. (1975). A fluorescence method for the studies of spent sulfite liquor and humic substances in seawater. Anal. Chim. Acta., 78,
411–421.
Backhus, D.A. and Gschwend, P.M. (1990). Fluorescent polycyclic aromatic hydrocarbons
as probes for studying the impact of colloids on pollutant transport in groundwater.
Environ. Sci. Technol., 24, 1214–1223.
Backhus, D.A., Golini, C., and Castellanos, E. (2003). Evaluation of fluorescence quenching for assessing the importance of interactions between nonpolar organic pollutants
and dissolved organic matter. Environ. Sci. Technol., 37, 4717–4723.
Baker, A. (2001). Fluorescence excitation-emission matrix characterization of some sewage-impacted rivers. Environ. Sci. Technol., 35, 948–953.
Baker, A. (2005). Thermal fluorescence quenching properties of dissolved organic matter.
Water Res., 39, 4405–4412.
Barsberg, S., Elder, T., and Felby, C. (2003). Lignin-quinone interactions: Implications for
optical properties of lignin. Chem. Mater., 15, 649–655.
Berman, T. (1972). Profiles of chlorophyll concentrations by in vivo fluorescence: Some
limnological applications. Limnol. Oceanogr., 17, 616–618.
Bian, H., Zhang, H., Yu, Qing, Chen, Z., and Liang, H. (2007). Studies of the interaction of
cinnamic acid with bovine serum albumin. Chem. Pharm. Bull., 55, 871–875.
Blaser, P. and Sposito, G. (1987). Spectrofluorometric investigation of trace metal complexation by an aqueous chestnut leaf litter extract. Soil Sci. Soc. Am. J., 51, 612–619.
Blough, N. and Del Vecchio, R. (2002). Chromophoric DOM in the coastal environment. In
D.A. Hansell and C.A. Carlson (Eds.), Biogeochemistry of Marine Dissolved Organic
Matter (pp. 509–546). San Diego, CA: Academic Press.
Boerjan, W., Ralph, J., and Baucher, M. (2003). Lignin biosynthesis. Annu. Rev. Plant
Biol., 54, 519–546.
Bonerz, D.P.M., Nikfardjam, M.S.P., and Creasy, G.L. (2008). A new RP-HPLC method
for the analysis of polyphenols, anthcyanins, and indole-3-acetic acid in wine. Am. J.
Enol. Vitic., 59, 106–109.
Boulton, R. (2001). The copigmentation of anthocyanins and its role in the color of red
wine: A critical review. Am. J. Enol. Vitic., 52, 67–87.
Boyle, E.R., Guerriero, N., Thiallet, A., Del Vecchio, R., and Blough, N. (2009). Optical
properties of humic substances and CDOM: Relation to structure. Environ. Sci.
Technol., 43, 2262–2268.
Braslavsky, S.E. (2007). Glossary of terms used in photochemistry. IUPAC Recommendations,
3rd ed., Pure Appl. Chem., 79, 293–465.
Brown, B.A., McColl, J.G., and Driscoll, C.T. (1990). Aluminum speciation using morin: I.
Morin and its complexes with aluminum. J. Environ. Qual., 19, 65–72.
