254
R. M. Jadhav and J. S. Sangwai
Farooqui J, Babadagli T, Li HA (2015) Improvement of the recovery factor using nano-metal Particles at the late stages of cyclic steam stimulation. In: SPE Canada heavy oil technical conference.
Calgary, Alberta, Canada, 9–11 June. SPE-174478-MS
Gavrielatos I, Mohan R, Shoham O (2017) Effect of intermediate wettability nanoparticles on
oil-water emulsion stability. J Petrol Sci Eng 152:664–674
Ghaffari A, Sharifi K, Ivakpour J (2017) An experimental study on the effects of temperature and
asphaltene content on the rheological behavior of vacuum residues. Pet Sci Technol 35:768–774
Golmohammadi M, Ahmadi SJ, Towfighi J (2016) Catalytic cracking of heavy petroleum residue in
supercritical water: study on the effect of different metal oxide nanoparticles. J Supercrit Fluids
113:136–143
Guo K, Zhang Y, Shi Q, Yu Z (2017) The effect of carbon-supported nickel nanoparticles in the
reduction of carboxylic acids for in situ upgrading of heavy crude oil. Energy Fuels 31:6045–6055
Guo K, Hansen VF, Li H, Yu Z (2018) Monodispersed nickel and cobalt nanoparticles in
desulfurization of thiophene for in-situ upgrading of heavy crude oil. Fuel 211:697–703
Hashemi R, Nassar NN, Pereira-Almao P (2012) Transport behavior of multimetallic ultradispersed
nanoparticles in an oil-sands-packed bed column at a high temperature and pressure. Energy Fuels
26:1645–1655
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
Hendraningrat L, Souraki Y, Torsater O (2014) Experimental investigation of decalin and metal
nanoparticles-assisted bitumen upgrading during catalytic aquathermolysis. In: SPE/EAGE European unconventional resources conference and exhibition. Vienna, Austria, 25–27 February. SPE
167807
Huang X, El-Sayed MA (2010) Gold nanoparticles: optical properties and implementations in
cancer diagnosis and photothermal therapy. J Adv Res 1:13–28
Hu R, Crawshaw JP, Trusler JPM, Boek ES (2015) Rheology of diluted heavy crude oil saturated
with carbon dioxide. Energy Fuels 29:2785–2789
Ilyin SO, Strelets LA (2018) Basic fundamentals of petroleum rheology and their application for
the investigation of crude oils of different natures. Energy Fuels 32:268–278
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
Kazemzadeh Y, Eshraghi SE, Riazi M, Zendehboudi S (2018) How do metal oxide nanoparticles
influence on interfacial tension of asphaltic oil-supercritical CO 2 systems? J Supercrit Fluids
135:1–7
Kumar G, Kakati A, Mani E, Sangwai JS (2018) Nanoparticle stabilized solvent-based emulsion for
enhanced heavy oil recovery. In: SPE Canada heavy oil technical conference, Calgary, Alberta,
Canada, 13–14 March. SPE-189774-MS
Lai YH, Zhou Z, Basheer C, Zare RN (2017) Upgrading asphaltenes by oil droplets striking a
charged TiO 2 -immobilized paper surface. Energy Fuels 31:12685–12690
Lan J, Yang Y, Li X (2004) Microstructure and microhardness of SiC nanoparticles reinforced
magnesium composites fabricated by ultrasonic method. Mater Sci Eng A 386:284–290
Li W, Zhu JH, Qi JH (2007) Application of nano-nickel catalyst in the viscosity reduction of Liaohe
extra-heavy oil by aqua-thermolysis. J Fuel Chem Technol 35:176–180
Lu T, Li Z, Fan W, Zhang X, Lv Q (2016) Nanoparticles for inhibition of asphaltenes deposition
during CO 2 flooding. Ind Eng Chem Res 55:6723–6733
Mehta P, Huh C, Bryant SL (2014) Evaluation of superparamagnetic nanoparticle-based heating
for flow assurance in subsea flowlines. In: International petroleum technology conference. Kuala
Lumpur, Malaysia, 10–12 December. IPTC-18090-MS
Menéndez-Manjón A, Moldenhauer K, Wagener P, Barcikowski S (2011) Nano-energy research
trends: bibliometrical analysis of nanotechnology research in the energy sector. J Nanopart Res
13:3911–3922
R. M. Jadhav and J. S. Sangwai
Farooqui J, Babadagli T, Li HA (2015) Improvement of the recovery factor using nano-metal Particles at the late stages of cyclic steam stimulation. In: SPE Canada heavy oil technical conference.
Calgary, Alberta, Canada, 9–11 June. SPE-174478-MS
Gavrielatos I, Mohan R, Shoham O (2017) Effect of intermediate wettability nanoparticles on
oil-water emulsion stability. J Petrol Sci Eng 152:664–674
Ghaffari A, Sharifi K, Ivakpour J (2017) An experimental study on the effects of temperature and
asphaltene content on the rheological behavior of vacuum residues. Pet Sci Technol 35:768–774
Golmohammadi M, Ahmadi SJ, Towfighi J (2016) Catalytic cracking of heavy petroleum residue in
supercritical water: study on the effect of different metal oxide nanoparticles. J Supercrit Fluids
113:136–143
Guo K, Zhang Y, Shi Q, Yu Z (2017) The effect of carbon-supported nickel nanoparticles in the
reduction of carboxylic acids for in situ upgrading of heavy crude oil. Energy Fuels 31:6045–6055
Guo K, Hansen VF, Li H, Yu Z (2018) Monodispersed nickel and cobalt nanoparticles in
desulfurization of thiophene for in-situ upgrading of heavy crude oil. Fuel 211:697–703
Hashemi R, Nassar NN, Pereira-Almao P (2012) Transport behavior of multimetallic ultradispersed
nanoparticles in an oil-sands-packed bed column at a high temperature and pressure. Energy Fuels
26:1645–1655
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
Hendraningrat L, Souraki Y, Torsater O (2014) Experimental investigation of decalin and metal
nanoparticles-assisted bitumen upgrading during catalytic aquathermolysis. In: SPE/EAGE European unconventional resources conference and exhibition. Vienna, Austria, 25–27 February. SPE
167807
Huang X, El-Sayed MA (2010) Gold nanoparticles: optical properties and implementations in
cancer diagnosis and photothermal therapy. J Adv Res 1:13–28
Hu R, Crawshaw JP, Trusler JPM, Boek ES (2015) Rheology of diluted heavy crude oil saturated
with carbon dioxide. Energy Fuels 29:2785–2789
Ilyin SO, Strelets LA (2018) Basic fundamentals of petroleum rheology and their application for
the investigation of crude oils of different natures. Energy Fuels 32:268–278
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
Kazemzadeh Y, Eshraghi SE, Riazi M, Zendehboudi S (2018) How do metal oxide nanoparticles
influence on interfacial tension of asphaltic oil-supercritical CO 2 systems? J Supercrit Fluids
135:1–7
Kumar G, Kakati A, Mani E, Sangwai JS (2018) Nanoparticle stabilized solvent-based emulsion for
enhanced heavy oil recovery. In: SPE Canada heavy oil technical conference, Calgary, Alberta,
Canada, 13–14 March. SPE-189774-MS
Lai YH, Zhou Z, Basheer C, Zare RN (2017) Upgrading asphaltenes by oil droplets striking a
charged TiO 2 -immobilized paper surface. Energy Fuels 31:12685–12690
Lan J, Yang Y, Li X (2004) Microstructure and microhardness of SiC nanoparticles reinforced
magnesium composites fabricated by ultrasonic method. Mater Sci Eng A 386:284–290
Li W, Zhu JH, Qi JH (2007) Application of nano-nickel catalyst in the viscosity reduction of Liaohe
extra-heavy oil by aqua-thermolysis. J Fuel Chem Technol 35:176–180
Lu T, Li Z, Fan W, Zhang X, Lv Q (2016) Nanoparticles for inhibition of asphaltenes deposition
during CO 2 flooding. Ind Eng Chem Res 55:6723–6733
Mehta P, Huh C, Bryant SL (2014) Evaluation of superparamagnetic nanoparticle-based heating
for flow assurance in subsea flowlines. In: International petroleum technology conference. Kuala
Lumpur, Malaysia, 10–12 December. IPTC-18090-MS
Menéndez-Manjón A, Moldenhauer K, Wagener P, Barcikowski S (2011) Nano-energy research
trends: bibliometrical analysis of nanotechnology research in the energy sector. J Nanopart Res
13:3911–3922
