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246 BIBLIOGRAPHY
Spurlock, F. C. and J. W. Biggar, “Thermodynamics of organic chemical partition in
soils. 2. Nonlinear partition of substituted phenylureas from aqueous solution,”
Environ. Sci. Technol. 28, 996–1002 (1994).
Stark, F. L., Jr., “Investigations of chloropicrin as a soil fumigant,” New York (Cornell)
Agric. Exp. Stn. Mem. 178, 1–61 (1948).
Stevenson, F. J.,“Geochemistry of soil humic substances,” In Humic Substances in Soil,
Sediment, and Water, G. R. Aiken, D. M. McKnight, R. L. Wershaw, and P.
MacCarthy, Eds., Wiley-Interscience, New York, 1985, pp. 13–29.
Sugiura,K.,T.Washino,M. Hattori,E. Sato,and N. Goto,“Accumulation of organochlo-
rine compounds in fishes. Difference of accumulation factors by fishes,” Chemos-
phere 8, 359–364 (1979).
Sun, S. and S. A. Boyd, “Sorption of polychlorobiphenyl (PCB) congeners by residual
PCB–oil phases in soils,” J. Environ. Qual. 20, 557–561 (1991).
———, “Sorption of nonionic organic compounds in soil–water systems containing
a petroleum sulfonate–oil surfactants,” Environ. Sci. Technol. 27, 1340–1346 (1993).
Sun, S., W. P. Inskeep, and S. A. Boyd, “Sorption of nonionic organic compounds in
soil–water systems containing a micelle-forming surfactant,” Environ. Sci. Technol.
29, 903–913 (1995).
Swackhamer, D. L. and R. A. Hites, “Occurrence and bioaccumulation of organochlo-
rine compounds in fishes from Siskiwit Lake, Isle Royale, Lake Superior,” Environ.
Sci. Technol. 22, 543–548 (1988).
Swoboda, A. R. and G. W. Thomas, “Movement of parathion in soil columns,” J. Agric.
Food Chem. 16, 923–927 (1968).
Tam, D. D.,W.-Y. Shiu, K. Qiang, and D. Mackay,“Uptake of chlorobenzenes by tissues
of the soybean plant: equilibria and kinetics,” Environ. Toxicol. Chem. 15, 489–494
(1996).
Theng, B. K. G., D. J. Greenland, and J. P. Quirk, “Adsorption of alkylammonium
cations by montmorillonite,” Clay Miner. 7, 1–17 (1967).
Thibaud, C., C. Erkey, and A. Akgerman, “Investigation of the effect of moisture on
the sorption and desorption of chlorobenzene and toluene from soil,” Environ. Sci.
Technol. 27, 2373–2380 (1993).
Thurman, E. M., R. L. Wershaw, R. L. Malcolm, and D. J. Pinckney, “Molecular size of
aquatic humic substances,” Org. Geochem. 4, 27–35 (1982).
Tiller, K. G. and L. H. Smith, “Limitations of EGME retention to estimate the surface
area of soils,” Aust. J. Soil. Res. 28, 1–26 (1990).
Trapp, S.,“Model for uptake of xenobiotics into plants,” In Plant Contamination: Mod-
eling and Simulation of Organic Chemical Processes, S. Trapp and J. C. McFarland,
Eds., Lewis Publishers, Boca Raton, FL, 1995.
———,“Modelling uptake into roots and subsequent translocation of neutral and ion-
isable organic compounds,” Pest. Manag. Sci. 56, 767–778 (2000).
Trapp, S. and M. Matthies, “Generic one-compartment model for uptake of organic
chemicals by foliar vegetation,” Environ. Sci. Technol. 29, 2333–2338 (1995).
Trapp, S., M. Matthies, I. Scheunert, and E. M. Topp, “Modeling the bioconcentration
of organic chemicals in plants,” Environ. Sci. Technol. 24, 1246–1252 (1990).
Underdown, A. W., C. H. Langford, and D. S. Gamble, “Light scattering of a polydis-
perse fulvic acid,” Anal. Chem. 53, 2139–2140 (1981).

