Geoscience Reference
In-Depth Information
Lapworth, D.J., Gooddy, D.C., Butcher, A.S., and Morris, B.L. (2008). Tracing groundwa-
ter flow and sources of organic carbon in sandstone aquifers using fluorescence prop-
erties of dissolved organic matter (DOM). Appl. Geochem ., 23 , 3384-3390.
Lapworth, D.J., Gooddy, D.C., Allen, D., and Old, G.H. (2009). Understanding groundwa-
ter, surface water, and hyporheic zone biogeochemical processes in a Chalk catchment
using fluorescence properties of dissolved and colloidal organic matter. J. Geophys.
Res ., 114 , G00F02.
Lee, S. and Ahn, K.H. (2004). Monitoring of COD as an organic indicator in wastewater
and treated effluent by fluorescence excitation-emission (FEEM) matrix characteriza-
tion. Water Sci. Technol ., 50 (8), 57-63.
Lohrenz, S.E., Cai, W-J., Chen, F., Chen, X., and Tuel, M. (2009). Seasonal variability in
air-sea fluxes of CO 2 in a river-influenced coastal margin. J. Geophys. Res ., 115, IC10,
doi: 10.1029/2009JC005608
Lonborg, C., Alvarez-Salgado, X.A., Davidson, K., Martinex-Garcia, S., and Teira, E.
(2010). Assessing the microbial bioavailability and degradation rate constants of dis-
solved organic matter by fluorescence spectroscopy in the coastal upwelling system
of the Ria de Vigo. Mar. Chem ., 119 , 121-129.
Lu, F., Chang, C-H., Lee, D-J., He, P.J., Shao, L.M., and Su, A. (2009). Dissolved organic
matter with multi-peak fluorophores in landfill leachate. Chemosphere , 74 (4), 575-582.
Maie, N., Boyer, J.N., Yang, C., and Jaffé, R. (2006). Spatial, geomorphological, and
seasonal variability of CDOM in estuaries of the Florida Coastal Everglades.
Hydrobiologia , 569 , 135-150.
Marhaba, T.F., Borgaonkar, A.D., and Punburananon, K. (2009). Principal component
regression model applied to dimensionally reduced spectral fluorescent signature for
the determination of organic character and THM formation potential of source water.
J. Hazard. Mater ., 169 , 998-1004.
Matilainen, A., Gjessing, E. T., Lahtinen, T., Hed, L., Bhatnagar, A., and Sillanpää, M.
(2011). An overview of the methods used in the characterisation of natural organic
matter (NOM) in relation to drinking water treatment. Chemosphere , 83 , 1431-1442.
McGarry, S.F. and Baker, A., (2000). Organic acid fluorescence: Applications to speleo-
them palaeoclimate reconstruction. Quat. Sci. Rev ., 19 , 1087-1101
McKnight, D.M., Boyer, E.W., Westerhoff, P.K., Doran, P.T., Kulbe, T., and Andersen, D.T.
(2001). Spectrofluorometric characterization of aquatic fulvic acids for determination
of precursor organic material and general structural properties. Limnol. Oceanogr .,
46 , 38-48.
Milbrandt, E.C., Coble, P.G., Conmy, R.N., Martignette, A.J., and Siwicke, J.J. (2010).
Evidence for the production of marine fluorescent dissolved organic matter in coastal
environments and a possible mechanism for formation and dispersion. Limnol.
Oceanogr ., 55 , 2037-2051.
Miller, M.P. and McKnight, D.M. (2010). Comparison of seasonal changes in fluorescent
dissolved organic matter among aquatic lake and stream sites in the Green Lakes
Valley. J. Geophys. Res ., 115 , G00F12.
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/wetland eco-
system, Colorado Front Range. Environ. Sci. Technol ., 40 , 5943-5949.
Moon, J. Lee, S., Song, J.H., and Cho, J. (2010). Membrane fouling indicator of effluent
organic matter with nanofiltration for wastewater reclamation, as obtained from flow
field-flow fractionation. Sep. Purif. Technol ., 73 (2) 164-172.
Search WWH ::




Custom Search