274
R. Sandeep et al.
Clark PD, Clarke RA, Hyne JB, Lesage KL (1990) Studies on the effect of metal species on oil
sands undergoing steam treatments. Aostra J Res 6:53–64
Craig FF (1971) The reservoir engineering aspects of waterflooding, vol 3. HL Doherty Memorial
Fund of AIME, New York. Society of Petroleum Engineers. ISBN: 978-0-89520-202-4
El-Diasty AI, Ragab AMS (2013) Applications of nanotechnology in the oil & gas industry: latest trends worldwide & future challenges in Egypt. In: North Africa technical conference and
exhibition, Cairo, Egypt. 164716-MS, 15–17 April 2013. Society of Petroleum Engineers
Esmaeili A (2011) Applications of nanotechnology in oil and gas industry. In: AIP conference
proceedings, vol 1. AIP, pp 133–136
Giraldo J, Benjumea P, Lopera S, Cortés FB, Ruiz MA (2013) Wettability alteration of sandstone
cores by alumina-based nanofluids. Energy Fuels 27:3659–3665
Hashemi R, Nassar NN, Pereira Almao P (2013) Enhanced heavy oil recovery by in situ prepared
ultradispersed multimetallic nanoparticles: a study of hot fluid flooding for Athabasca bitumen
recovery. Energy Fuels 27:2194–2201
Hashemi R, Nassar NN, Almao PP (2014) Nanoparticle technology for heavy oil in-situ upgrading
and recovery enhancement: opportunities and challenges. Appl Energy 133:374–387
He L, Xu J, Bin D (2016) Application of nanotechnology in petroleum exploration and development.
Pet Explor Dev 43:1107–1115
Hendraningrat L, Li S, Torsater O (2013) Effect of some parameters influencing enhanced oil
recovery process using silica nanoparticles: an experimental investigation. In: SPE reservoir
characterization and simulation conference and exhibition, Abu Dhabi, UAE. 165955-MS, 16–18
September 2013. Society of Petroleum Engineers
Hirasaki G, Zhang DL (2004) Surface chemistry of oil recovery from fractured, oil-wet, carbonate
formations. SPE J 9:151–162. 88365-PA
Hyne J (1986) Aquathermolysis: a synopsis of work on the chemical reaction between water (Steam)
and heavy oil sands during simulated steam stimulation. AOSTRA Library of Information Service,
Canada, OSTI ID: 220464, Reference Number: SCA: 040401
Jahagirdar SR (2008) Oil-microbe detection tool using nano optical fibers. In: SPE western regional
and pacific section AAPG joint meeting, Bakersfield, California, USA. 113357-MS, 29 March–4
April 2008. Society of Petroleum Engineers
Kapusta S, Balzano L, Te Riele PM (2011) Nanotechnology applications in oil and gas exploration and production. In: International petroleum technology conference, Bangkok, Thailand,
International Petroleum Technology Conference. IPTC-15152-MS, 15–17 November 2011
Karimi A, Fakhroueian Z, Bahramian A, Pour Khiabani N, Darabad JB, Azin R, Arya S (2012)
Wettability alteration in carbonates using zirconium oxide nanofluids: EOR implications. Energy
Fuels 26:1028–1036
Kazemzadeh Y, Eshraghi SE, Kazemi K, Sourani S, Mehrabi M, Ahmadi Y (2015) Behavior
of asphaltene adsorption onto the metal oxide nanoparticle surface and its effect on heavy oil
recovery. Ind Eng Chem Res 54:233–239
Ko S, Huh C (2018) Use of nanoparticles for oil production applications. J Petrol Sci Eng 172:97–114
Kong X, Ohadi M (2010) Applications of micro and nano technologies in the oil and gas industryoverview of the recent progress. In: Abu Dhabi international petroleum exhibition and conference,
Abu Dhabi, UAE. 138241-MS, 1–4 November 2010. Society of Petroleum Engineers
Krishnamoorti R (2006) Extracting the benefits of nanotechnology for the oil industry. J Petrol
Technol 58:24–26
Le NYT, Pham DK, Le KH, Nguyen PT (2011) Design and screening of synergistic blends of SiO 2
nanoparticles and surfactants for enhanced oil recovery in high-temperature reservoirs. Adv Nat
Sci: Nanosci Nanotechnol 2:035013
Le Van S, Chon BH (2016) Chemical flooding in heavy-oil reservoirs: from technical investigation
to optimization using response surface methodology. Energies 9:711
Li G (2004) Properties of high-volume fly ash concrete incorporating nano-SiO 2 . Cem Concr Res
34:1043–1049
R. Sandeep et al.
Clark PD, Clarke RA, Hyne JB, Lesage KL (1990) Studies on the effect of metal species on oil
sands undergoing steam treatments. Aostra J Res 6:53–64
Craig FF (1971) The reservoir engineering aspects of waterflooding, vol 3. HL Doherty Memorial
Fund of AIME, New York. Society of Petroleum Engineers. ISBN: 978-0-89520-202-4
El-Diasty AI, Ragab AMS (2013) Applications of nanotechnology in the oil & gas industry: latest trends worldwide & future challenges in Egypt. In: North Africa technical conference and
exhibition, Cairo, Egypt. 164716-MS, 15–17 April 2013. Society of Petroleum Engineers
Esmaeili A (2011) Applications of nanotechnology in oil and gas industry. In: AIP conference
proceedings, vol 1. AIP, pp 133–136
Giraldo J, Benjumea P, Lopera S, Cortés FB, Ruiz MA (2013) Wettability alteration of sandstone
cores by alumina-based nanofluids. Energy Fuels 27:3659–3665
Hashemi R, Nassar NN, Pereira Almao P (2013) Enhanced heavy oil recovery by in situ prepared
ultradispersed multimetallic nanoparticles: a study of hot fluid flooding for Athabasca bitumen
recovery. Energy Fuels 27:2194–2201
Hashemi R, Nassar NN, Almao PP (2014) Nanoparticle technology for heavy oil in-situ upgrading
and recovery enhancement: opportunities and challenges. Appl Energy 133:374–387
He L, Xu J, Bin D (2016) Application of nanotechnology in petroleum exploration and development.
Pet Explor Dev 43:1107–1115
Hendraningrat L, Li S, Torsater O (2013) Effect of some parameters influencing enhanced oil
recovery process using silica nanoparticles: an experimental investigation. In: SPE reservoir
characterization and simulation conference and exhibition, Abu Dhabi, UAE. 165955-MS, 16–18
September 2013. Society of Petroleum Engineers
Hirasaki G, Zhang DL (2004) Surface chemistry of oil recovery from fractured, oil-wet, carbonate
formations. SPE J 9:151–162. 88365-PA
Hyne J (1986) Aquathermolysis: a synopsis of work on the chemical reaction between water (Steam)
and heavy oil sands during simulated steam stimulation. AOSTRA Library of Information Service,
Canada, OSTI ID: 220464, Reference Number: SCA: 040401
Jahagirdar SR (2008) Oil-microbe detection tool using nano optical fibers. In: SPE western regional
and pacific section AAPG joint meeting, Bakersfield, California, USA. 113357-MS, 29 March–4
April 2008. Society of Petroleum Engineers
Kapusta S, Balzano L, Te Riele PM (2011) Nanotechnology applications in oil and gas exploration and production. In: International petroleum technology conference, Bangkok, Thailand,
International Petroleum Technology Conference. IPTC-15152-MS, 15–17 November 2011
Karimi A, Fakhroueian Z, Bahramian A, Pour Khiabani N, Darabad JB, Azin R, Arya S (2012)
Wettability alteration in carbonates using zirconium oxide nanofluids: EOR implications. Energy
Fuels 26:1028–1036
Kazemzadeh Y, Eshraghi SE, Kazemi K, Sourani S, Mehrabi M, Ahmadi Y (2015) Behavior
of asphaltene adsorption onto the metal oxide nanoparticle surface and its effect on heavy oil
recovery. Ind Eng Chem Res 54:233–239
Ko S, Huh C (2018) Use of nanoparticles for oil production applications. J Petrol Sci Eng 172:97–114
Kong X, Ohadi M (2010) Applications of micro and nano technologies in the oil and gas industryoverview of the recent progress. In: Abu Dhabi international petroleum exhibition and conference,
Abu Dhabi, UAE. 138241-MS, 1–4 November 2010. Society of Petroleum Engineers
Krishnamoorti R (2006) Extracting the benefits of nanotechnology for the oil industry. J Petrol
Technol 58:24–26
Le NYT, Pham DK, Le KH, Nguyen PT (2011) Design and screening of synergistic blends of SiO 2
nanoparticles and surfactants for enhanced oil recovery in high-temperature reservoirs. Adv Nat
Sci: Nanosci Nanotechnol 2:035013
Le Van S, Chon BH (2016) Chemical flooding in heavy-oil reservoirs: from technical investigation
to optimization using response surface methodology. Energies 9:711
Li G (2004) Properties of high-volume fly ash concrete incorporating nano-SiO 2 . Cem Concr Res
34:1043–1049
