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(11):1799–1815
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redistribution in heterogeneous porous media subject to electrical resistance heating. J Contam
Hydrol 184:14–24
Munson B, Young D, Okiishi T, Huebsch W (2009) Fundamentals of fluid mechanics. Wiley,
New York, NY, 783 p. isbn:978-0470-26284-9
Newell C, Adamson D (2005) Planning-level source decay models to evaluate impact of source
depletion on remediation timeframe. Remediation 15(4):27–47
Ng K, Davis H, Scriven L (1978) Visualization of blob mechanics in flow through porous media.
Chem Eng Sci 33(8):1009–1017
Nield D, Bejan A (1999) Convection in porous media, 2nd edn. Springer, New-York, NY,
546 p. isbn:978-1-4757-3033-3
O’Carroll D, Sleep B (2007) Hot water flushing for immiscible displacement of a viscous NAPL. J
Contam Hydrol 91:247–266
O’Carroll D, Sleep B (2009) Role of NAPL thermal properties in the effectiveness of hotwater
flooding. Transp Porous Media 79:393–405
Okasha T, Menouar H, Abu-Khamsin S (1998) Oil recovery from Tarmat reservoirs using hot water
and solvent flooding. J Can Pet Technol 37(4):33–40
Panagopoulos D, Jahnke A, Kierkegaard A, MacLeod M (2017) Temperature dependence of the
organic carbon/water partition ratios (koc) of volatile methylsiloxanes. Environ Sci Technol Lett
4:240–245
Pennell K, Pope G, Abriola L (1996) Influence of viscous and buoyancy forces on the mobilization
of residual tetrachloroethylene during surfactant flushing. Environ Sci Technol 30:1328–1335
Perez J, Lang C, Roure J, Baccelli A (2014) Taux d’utilisation et couts des différentes techniques et
filières de traitement des sols et des eaux souterraines pollués en France – Synthèse des données
2012. Technical report. Agence de l’Environnement et de la Maîtrise de l’Energie (ADEME)/
Ernst & Young, 20, avenue du Grésillé – 49004 Angers Cedex 01, 148 p
Perry R, Green D, Maloney J (1997) Perry’s chemical engineers’ handbook, 7th edn. McGraw-Hill,
New York, NY, 2471 p. isbn:0-07-049841-5
Philip J, De Vries D (1957) Moisture movement in porous materials under temperature gradients.
Eos Trans Am Geophys Union 38(2):222–232. https://doi.org/10.1029/TR038i002p00222
Pironi P, Switzer C, Gerhard J, Rein G, Torero J (2011) Self-sustaining smoldering combustion for
NAPL remediation: laboratory evaluation of process sensitivity to key parameters. Environ Sci
Technol 45(7):2980–2986
Poston S, Ysrael S, Hossain A, Montgomery E III (1970) The effect of temperature on irreducible
water saturation and relative permeability of unconsolidated sands. Soc Pet Eng 10:171–180
Powell T, Smith G, Sturza J, Lynch K, Truex M (2007) New advancements for in situ treatment
using electrical resistance heating. Remediat J 17:51–70
Purshotam K, Juriasingani P, Kershner M (2007) In situ soil mixing and injection using large
diameter auger. Joint services environmental management conference. Joint Services Environmental Management, Columbus, OH
Quintard M (1993) Diffusion in isotropic and anisotropic porous systems: three-dimensional
calculations. Transp Porous Media 11(2):187–199
Reza J, Trejo A, Vera-Avila L (2002) Determination of the temperature dependence of water
solubilities of polycyclic aromatic hydrocarbons by a generator column-on-line solid-phase
extraction-liquid chromatographic method. Chemosphere 47(9):933–945
Robinson J, Snape CE, Kingman SW, Shang H (2008) Thermal desorption and pyrolysis of
oil-contaminated drill cuttings by microwave heating. J Anal Appl Pyrolysis 81(1):27–32
Robinson J, Binner E, Saeid A, Al-Harahsheh M, Kingman S (2014) Microwave processing of Oil
Sands and contribution of clay minerals. Fuel 135:153–161
3 In Situ Thermal Treatments and Enhancements: Theory and Case Study
207
(11):1799–1815
Munholland J, Mumford K, Kueper B (2016) Factors affecting gas migration and contaminant
redistribution in heterogeneous porous media subject to electrical resistance heating. J Contam
Hydrol 184:14–24
Munson B, Young D, Okiishi T, Huebsch W (2009) Fundamentals of fluid mechanics. Wiley,
New York, NY, 783 p. isbn:978-0470-26284-9
Newell C, Adamson D (2005) Planning-level source decay models to evaluate impact of source
depletion on remediation timeframe. Remediation 15(4):27–47
Ng K, Davis H, Scriven L (1978) Visualization of blob mechanics in flow through porous media.
Chem Eng Sci 33(8):1009–1017
Nield D, Bejan A (1999) Convection in porous media, 2nd edn. Springer, New-York, NY,
546 p. isbn:978-1-4757-3033-3
O’Carroll D, Sleep B (2007) Hot water flushing for immiscible displacement of a viscous NAPL. J
Contam Hydrol 91:247–266
O’Carroll D, Sleep B (2009) Role of NAPL thermal properties in the effectiveness of hotwater
flooding. Transp Porous Media 79:393–405
Okasha T, Menouar H, Abu-Khamsin S (1998) Oil recovery from Tarmat reservoirs using hot water
and solvent flooding. J Can Pet Technol 37(4):33–40
Panagopoulos D, Jahnke A, Kierkegaard A, MacLeod M (2017) Temperature dependence of the
organic carbon/water partition ratios (koc) of volatile methylsiloxanes. Environ Sci Technol Lett
4:240–245
Pennell K, Pope G, Abriola L (1996) Influence of viscous and buoyancy forces on the mobilization
of residual tetrachloroethylene during surfactant flushing. Environ Sci Technol 30:1328–1335
Perez J, Lang C, Roure J, Baccelli A (2014) Taux d’utilisation et couts des différentes techniques et
filières de traitement des sols et des eaux souterraines pollués en France – Synthèse des données
2012. Technical report. Agence de l’Environnement et de la Maîtrise de l’Energie (ADEME)/
Ernst & Young, 20, avenue du Grésillé – 49004 Angers Cedex 01, 148 p
Perry R, Green D, Maloney J (1997) Perry’s chemical engineers’ handbook, 7th edn. McGraw-Hill,
New York, NY, 2471 p. isbn:0-07-049841-5
Philip J, De Vries D (1957) Moisture movement in porous materials under temperature gradients.
Eos Trans Am Geophys Union 38(2):222–232. https://doi.org/10.1029/TR038i002p00222
Pironi P, Switzer C, Gerhard J, Rein G, Torero J (2011) Self-sustaining smoldering combustion for
NAPL remediation: laboratory evaluation of process sensitivity to key parameters. Environ Sci
Technol 45(7):2980–2986
Poston S, Ysrael S, Hossain A, Montgomery E III (1970) The effect of temperature on irreducible
water saturation and relative permeability of unconsolidated sands. Soc Pet Eng 10:171–180
Powell T, Smith G, Sturza J, Lynch K, Truex M (2007) New advancements for in situ treatment
using electrical resistance heating. Remediat J 17:51–70
Purshotam K, Juriasingani P, Kershner M (2007) In situ soil mixing and injection using large
diameter auger. Joint services environmental management conference. Joint Services Environmental Management, Columbus, OH
Quintard M (1993) Diffusion in isotropic and anisotropic porous systems: three-dimensional
calculations. Transp Porous Media 11(2):187–199
Reza J, Trejo A, Vera-Avila L (2002) Determination of the temperature dependence of water
solubilities of polycyclic aromatic hydrocarbons by a generator column-on-line solid-phase
extraction-liquid chromatographic method. Chemosphere 47(9):933–945
Robinson J, Snape CE, Kingman SW, Shang H (2008) Thermal desorption and pyrolysis of
oil-contaminated drill cuttings by microwave heating. J Anal Appl Pyrolysis 81(1):27–32
Robinson J, Binner E, Saeid A, Al-Harahsheh M, Kingman S (2014) Microwave processing of Oil
Sands and contribution of clay minerals. Fuel 135:153–161
3 In Situ Thermal Treatments and Enhancements: Theory and Case Study
207
