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Engineers (ed) Fall meeting of the society of petroleum engineers of AIME. Denver, CO,
Number SPE Paper 1549G
Rosen M, Kunjappu J (2012) Surfactants and interfacial phenomena, 4th edn. Wiley, New York,
NY. Number 9780470541944; 616 p
Sabatini D, Knox R, Harwell J, Wu B (2000) Integrated design of surfactant enhanced DNAPL
remediation: Efficient supersolubilization and gradient systems. J Contam Hydrol 45
(1–2):99–121
Sale T (2001) Methods for determining inputs to environmental petroleum hydrocarbon mobility
and recovery models. Technical Report API PUBLICATION 4711, American Petroleum
Institute, 1220 L Street, Northwest, Washington, DC, 72 p
Sale T, Applegate D (1997) Mobile NAPL recovery: conceptual, field, and mathematical considerations. Groundwater 35:418–426
Sale T, Kuhn B (1988) Recovery of wood-treating oil from an alluvial aquifer using dual drainlines.
In: Petroleum hydrocarbons and organic chemicals in ground water: prevention, detection, and
restoration, vol 1, Houston, TX, pp 419–442
Schmidtke K, McBean E, Rovers F (1992) Evaluation of collection-well parameters for DNAPL. J
Environ Eng 118(2):183–195
Schowalter T (1979) Mechanics of secondary hydrocarbon migration and entrapment. Am Assoc
Pet Geol Bull 63(5):724–760
Schwille F (1988) Dense chlorinated solvents in porous and fractured media – model experiments.
Lewis Publishers, Chelsea, MI. Number 978-0873711210; 146 p
Simunek J, van Genuchten M (1994) The CHAIN_2D code for simulating the two-dimensional
movement of water, heat and multiple solutes in variably saturated porous media. U.S. Salinity
Lab Research, Riverside, CA. Number 136; 232 p
Sleep B (2003) Chapter 4: Modeling fate and transport of chlorinated organic compounds in the
subsurface. In: Contaminated ground water and sediment – modeling for management and
remediation. CRC Press LLC, Boca Raton, FL. Number 978-1-56670-667-4; 288 p
Sleep B, Sykes J (1993) Compositional simulation of groundwater contamination by organic
compounds. I. Model development and verification. Water Resour Res 29(6):1697–1708
Soga K, Page J, Illangasekare T (2004) A review of NAPL source zone remediation efficiency and
the mass flux approach. J Hazard Mater 110(1–3):13–27
Stroo H, Unger M, Ward C, Kavanaugh M, Vogel C, Leeson A, Marqusee J, Smith B (2003) Peer
Reviewed: Remediating Chlorinated Solvent Source Zones, A workshop lists the challenges and
research needs. Environ Sci Technol 37(11):224A–230A
Stupp H, Paus L (1999) Migrationsverhalten organischer Grundwasser-Inhaltsstoffe und daraus
resultierende Ansätze zur Beurteilung von Monitored Natural Attenuation (MNA). TerraTech
5:32–37
Suchomel E, Ramsburg C, Pennell K (2007) Evaluation of trichloroethene recovery processes in
heterogeneous aquifer cells flushed with biodegradable surfactants. J Contam Hydrol 94
(3–4):195–214
Suchomel E, Kavanaugh M, Mercer J, Johnson P (2014) Chapter 2: The source zone remediation
challenge. In: Kueper BH, Stroo HF, Vogel CM, Ward CH (eds) Chlorinated solvent source
zone remediation. Springer, SERDP ESTCP Environmental Remediation Technology,
New York, NY. Number 978-1-4614-6921-6; 713 p
Suthersan S (1997) Remediation engineering: design concepts. CRC Press, Boca Raton,
FL. Number 978-1-56670-137-2; 384 p
Taylor T, Pennell K, Abriola L, Dane J (2001) Surfactant enhanced recovery of tetrachloroethylene
from a porous medium containing low permeability lenses: 1. Experimental studies. J Contam
Hydrol 48(3–4):325–350
Travis C, Doty C (1990) Can contaminated aquifers at Superfund sites be remediated? Environ Sci
Technol 24:1464–1466
146
S. Colombano et al.
