Environmental Engineering Reference
In-Depth Information
Spence A, Simpson AJ, McNally DJ, Moran BW, McCaul MV, Hart K, Paull B, Kelleher BP
(2011) The degradation characteristics of microbial biomass in soil. Geochim Cosmochim
Acta 75:2571-2581
Spiker E (1981) Flux of organic carbon by rivers to the oceans report CONF-8009140, US
Department of Energy, Springfield, pp 79-109
Stedmon CA, Markager S (2005a) Tracing the production and degradation of autochtho-
nous fractions of dissolved organic matter by fluorescence analysis. Limnol Oceanogr
50:1415-1426
Stedmon CA, Markager S (2005b) Resolving the variability in dissolved organic matter fluores-
cence in a temperate estuary and its catchment using PARAFAC analysis. Limnol Oceanogr
50:686-697
Stedmon CA, Markager S, Bro R (2003) Tracing dissolved organic matter in aquatic environ-
ments using a new approach to fluorescence spectroscopy. Mar Chem 82:239-254
Stedmon CA, Markager S, Tranvik L, Kronberg L, Slätis T, Martinsen W (2007a) Photochemical
production of ammonium and transformation of dissolved organic matter in the Baltic Sea.
Mar Chem 104:227-240
Stedmon CA, Thomas DN, Granskog M, Kaartokallio H, Papaditriou S, Kuosa H (2007b)
Characteristics of dissolved organic matter in Baltic coastal sea ice: allochthonous or autoch-
thonous origins? Environ Sci Technol 41:7273-7279
Steelink C (2002) Investigating humic acids in soils. Anal Chem 74:328A-333A
Steffensen D, Burch M, Nicholson B, Drikas M, Baker P (1999) Management of toxic blue-green
algae (Cyanobacteria) in Australia. Environ Toxicol 14:183-195
Steinberg C, Muenster U (1985) Geochemistry and ecological role of humic substances in lake
water. In: Aiken GR, McKnight DM, Wershaw RL, MacCarthy P (eds) Humic substances in
soil, sediment, and water: geochemistry, isolation, and characterization. Wiley, New York, pp
105-145
Steinberg DK, Nelson NB, Carlson CA, Prusak AC (2004) Production of chromophoric dissolved
organic matter (CDOM) in the open ocean by zooplankton and the colonial cyanobacterium
Trichodesmium spp. Mar Ecol Prog Ser 267:45-56
Stenson AC, Landing WM, Marshall AG, Cooper WT (2002) Ionization and fragmentation of
humic substances in electrospray ionization Fourier transform-ion cyclotron resonance mass
spectrometry. Ana Chem 74(17):4397-4409
Stenson AC, Marshall AG, Cooper WT (2003) Exact masses and chemical formulas of individual
Suwannee river fulvic acids from ultrahigh resolution electrospray ionization Fourier trans-
form ion cyclotron resonance mass spectra. Anal Chem 75:1275-1284
Stepanauskas R, Moran MA, Bergamaschi BA, Hollibaugh JT (2005) Sources, bioavailability,
and photoreactivity of dissolved organic carbon in the Sacramento-San Joaquin River Delta.
Biogeochemistry 74(2):131-149
Stevenson FJ (1982) Humus chemistry: genesis-composition-reactions. Wiley, New York, pp
221-243
Stoddard JL, Kahl JS, Deviney FA, DeWalle DR, Driscoll CT, Herlihy AT, Kellogg JH, Murdoch
PS, WebbJR, Webster KE (2003) Response of surface water chemistry to the Clean Air Act
Amendments of 1990 Corvallis. US Environmental Protection Agency EPA/620/R-03/001,
Oregon
Strome DJ, Miller MC (1978) Photolytic changes in dissolved humic substances. Int Ver Theor
Angew Limnol 20:1248-1254
Struyk Z, Sposito G (2001) Redox properties of standard humic acids. Geoderma 102:329-346
Strynar MJ, Lindstrom AB (2008) Perfluorinated compound in house dust from Ohio and North
Carolina, USA. Environ Sci Technol 42:3751-3756
Stuermer DH, Harvey GR (1977) Isolation of humic substances and alcohol-soluble organic-mat-
ter from seawater. Deep Sea Res 24(3):303-309
Subedi B, Mottaleb MA, Chamblish CK, Usenko S (2011) Simultaneous analysis of select phar-
maceuticalsand personal care products in fish tissue using pressurized liquid extraction com-
bined with silica gel cleanup. J Chromatogr A 1218:6278-6284
Search WWH ::




Custom Search