276
R. Sandeep et al.
Resasco DE, Drexler S, Harwell JH, Shiau BJ, Kadhum MJ, Faria J, Ruiz MP (2015) Method
and foam composition for recovering hydrocarbons from a subterranean reservoir. US Patent
Application 14/344,241, June 2015
Roustaei A, Bagherzadeh H (2015) Experimental investigation of SiO 2 nanoparticles on enhanced
oil recovery of carbonate reservoirs. J Pet Explor Prod Technol 5:27–33
Salem Ragab AM, Hannora AE (2015) A comparative investigation of nano particle effects for
improved oil recovery—experimental work. In: SPE Kuwait oil and gas show and conference,
Mishref, Kuwait. 175395-MS, 11–14 October 2015. Society of Petroleum Engineers
Schembre JM, Tang G-Q, Kovscek AR (2006) Interrelationship of temperature and wettability on
the relative permeability of heavy oil in diatomaceous rocks (includes associated discussion and
reply). SPE Reserv Eval Eng 9:239–250
Schröder L, Lowery TJ, Hilty C, Wemmer DE, Pines A (2006) Molecular imaging using a targeted
magnetic resonance hyperpolarized biosensor. Science 314:446–449
Shah RD (2009) Application of nanoparticle saturated injectant gases for EOR of heavy oils. In: SPE
annual technical conference and exhibition, New Orleans, Louisiana. /29539-STU, 4–7 October
2009. Society of Petroleum Engineers
Sharma G, Mohanty K (2013) Wettability alteration in high-temperature and high-salinity carbonate
reservoirs. SPE J 18:646–655
Sheng JJ (2013) Surfactant enhanced oil recovery in carbonate reservoirs. In: Enhanced oil recovery
field case studies. Elsevier, Amsterdam, pp 281–299
Shokrlu YH, Babadagli T (2011) Transportation and interaction of nano and micro size metal
particles injected to improve thermal recovery of heavy-oil. In: SPE annual technical conference
and exhibition, Denver, Colorado, USA. 146661-MS, 30 October–2 November 2011. Society of
Petroleum Engineers
Silva IG, de Melo MA, Luvizotto JM, Lucas EF (2007) Polymer flooding: a sustainable enhanced
oil recovery in the current scenario. In: Latin American & caribbean petroleum engineering
conference, Buenos Aires, Argentina. 107727-MS, 15–18 April 2007. Society of Petroleum
Engineers
Skauge T, Spildo K, Skauge A (2010) Nano-sized particles for EOR. In: SPE improved oil recovery symposium, Tulsa, Oklahoma, USA. 129933-MS, 24–28 April 2010. Society of Petroleum
Engineers
Solaimany-Nazar AR, Zonnouri A (2011) Modeling of asphaltene deposition in oil reservoirs during
primary oil recovery. J Petrol Sci Eng 75:251–259
Song Y, Marcus C (2007) Hyperpolarized silicon nanoparticles: Reinventing oil exploration. In:
International presentation presented at the Schlumberger seminar, Schlumberger, College Station,
TX, USA
Souayeh M, Al-Maamari RS, Aoudia M, Karimi M, Hadji M (2018) Experimental investigation of
wettability alteration of oil-wet carbonates by a non-ionic surfactant. Energy Fuels 32:11222–
11233
Standnes DC, Austad T (2000) Wettability alteration in chalk: 2. Mechanism for wettability
alteration from oil-wet to water-wet using surfactants. J Petrol Sci Eng 28:123–143
Sun X, Zhang Y, Chen G, Gai Z (2017) Application of nanoparticles in enhanced oil recovery: a
critical review of recent progress. Energies 10:345
Tarboush BJA, Husein MM (2012) Adsorption of asphaltenes from heavy oil onto in situ prepared
NiO nanoparticles. J Colloid Interface Sci 378:64–69
Tarek M, El-Banbi AH (2015) Comprehensive investigation of effects of nano-fluid mixtures to
enhance oil recovery. In: SPE North Africa technical conference and exhibition, Cairo, Egypt.
175835-MS, 14–16 September 2015. Society of Petroleum Engineers
Tian QY, Wang L, Tang Y, Liu C, Ma C (2012) Wang T Research and application of nano polymer microspheres diversion technique of deep fluid. In: SPE international oilfield nanotechnology conference and exhibition. Society of Petroleum Engineers, Noordwijk, The Netherlands.
156999-MS, 12–14 June 2012
R. Sandeep et al.
Resasco DE, Drexler S, Harwell JH, Shiau BJ, Kadhum MJ, Faria J, Ruiz MP (2015) Method
and foam composition for recovering hydrocarbons from a subterranean reservoir. US Patent
Application 14/344,241, June 2015
Roustaei A, Bagherzadeh H (2015) Experimental investigation of SiO 2 nanoparticles on enhanced
oil recovery of carbonate reservoirs. J Pet Explor Prod Technol 5:27–33
Salem Ragab AM, Hannora AE (2015) A comparative investigation of nano particle effects for
improved oil recovery—experimental work. In: SPE Kuwait oil and gas show and conference,
Mishref, Kuwait. 175395-MS, 11–14 October 2015. Society of Petroleum Engineers
Schembre JM, Tang G-Q, Kovscek AR (2006) Interrelationship of temperature and wettability on
the relative permeability of heavy oil in diatomaceous rocks (includes associated discussion and
reply). SPE Reserv Eval Eng 9:239–250
Schröder L, Lowery TJ, Hilty C, Wemmer DE, Pines A (2006) Molecular imaging using a targeted
magnetic resonance hyperpolarized biosensor. Science 314:446–449
Shah RD (2009) Application of nanoparticle saturated injectant gases for EOR of heavy oils. In: SPE
annual technical conference and exhibition, New Orleans, Louisiana. /29539-STU, 4–7 October
2009. Society of Petroleum Engineers
Sharma G, Mohanty K (2013) Wettability alteration in high-temperature and high-salinity carbonate
reservoirs. SPE J 18:646–655
Sheng JJ (2013) Surfactant enhanced oil recovery in carbonate reservoirs. In: Enhanced oil recovery
field case studies. Elsevier, Amsterdam, pp 281–299
Shokrlu YH, Babadagli T (2011) Transportation and interaction of nano and micro size metal
particles injected to improve thermal recovery of heavy-oil. In: SPE annual technical conference
and exhibition, Denver, Colorado, USA. 146661-MS, 30 October–2 November 2011. Society of
Petroleum Engineers
Silva IG, de Melo MA, Luvizotto JM, Lucas EF (2007) Polymer flooding: a sustainable enhanced
oil recovery in the current scenario. In: Latin American & caribbean petroleum engineering
conference, Buenos Aires, Argentina. 107727-MS, 15–18 April 2007. Society of Petroleum
Engineers
Skauge T, Spildo K, Skauge A (2010) Nano-sized particles for EOR. In: SPE improved oil recovery symposium, Tulsa, Oklahoma, USA. 129933-MS, 24–28 April 2010. Society of Petroleum
Engineers
Solaimany-Nazar AR, Zonnouri A (2011) Modeling of asphaltene deposition in oil reservoirs during
primary oil recovery. J Petrol Sci Eng 75:251–259
Song Y, Marcus C (2007) Hyperpolarized silicon nanoparticles: Reinventing oil exploration. In:
International presentation presented at the Schlumberger seminar, Schlumberger, College Station,
TX, USA
Souayeh M, Al-Maamari RS, Aoudia M, Karimi M, Hadji M (2018) Experimental investigation of
wettability alteration of oil-wet carbonates by a non-ionic surfactant. Energy Fuels 32:11222–
11233
Standnes DC, Austad T (2000) Wettability alteration in chalk: 2. Mechanism for wettability
alteration from oil-wet to water-wet using surfactants. J Petrol Sci Eng 28:123–143
Sun X, Zhang Y, Chen G, Gai Z (2017) Application of nanoparticles in enhanced oil recovery: a
critical review of recent progress. Energies 10:345
Tarboush BJA, Husein MM (2012) Adsorption of asphaltenes from heavy oil onto in situ prepared
NiO nanoparticles. J Colloid Interface Sci 378:64–69
Tarek M, El-Banbi AH (2015) Comprehensive investigation of effects of nano-fluid mixtures to
enhance oil recovery. In: SPE North Africa technical conference and exhibition, Cairo, Egypt.
175835-MS, 14–16 September 2015. Society of Petroleum Engineers
Tian QY, Wang L, Tang Y, Liu C, Ma C (2012) Wang T Research and application of nano polymer microspheres diversion technique of deep fluid. In: SPE international oilfield nanotechnology conference and exhibition. Society of Petroleum Engineers, Noordwijk, The Netherlands.
156999-MS, 12–14 June 2012
