Interaction of Heavy Crude Oil and Nanoparticles …
255
Mironenko OO, Sosnin GA, Eletskii PM, Gulyaeva YK, Bulavchenko OA, Stonkus OA, Rodina
VO, Yakovlev VA (2017) Catalytic steam cracking of heavy crude oil with molybdenum and
nickel nanodispersed catalysts. Catal Ind 9:221–229
Mohammadi M, Akbari M, Fakhroueian Z, Bahramian A, Azin R, Arya S (2011) Inhibition of
asphaltene precipitation by TiO 2 , SiO 2 , and ZrO 2 nanofluids. Energy Fuels 25:3150–3156
Muraza O, Galadima A (2015) Aquathermolysis of heavy oil: a review and perspective on catalyst
development. Fuel 157:219–231
Nassar NN, Hassan A, Pereira-Almao P (2011) Application of nanotechnology for heavy oil
upgrading: catalytic steam gasification/cracking of asphaltenes. Energy Fuels 25:1566–1570
Nassar NN, Hassan A, Carbognani L, Lopez-Linares F, Pereira-Almao P (2012) Iron oxide nanoparticles for rapid adsorption and enhanced catalytic oxidation of thermally cracked asphaltenes. Fuel
95:257–262
Nguyen P, Fadaei H, Sinton D (2014) Pore-scale assessment of nanoparticle-stabilized CO 2 foam
for enhanced oil recovery. Energy Fuels 28:6221–6227
Patel H, Shah S, Ahmed R, Ucan S (2018) Effects of nanoparticles and temperature on heavy oil
viscosity. J Petrol Sci Eng 167:819–828
Ramírez-González PV (2016) Rheological behavior from light to heavy oils: construction of master
curves. Energy Fuels 30:7094–7099
Roth EA, Agarwal S, Gupta RK (2013) Nanoclay-based solid sorbents for CO 2 capture. Energy
Fuels 27:4129–4136
Rudyak V (2013) Viscosity of nanofluids. Why it is not described by the classical theories, Adv
Nanopart 2:266–279
Sandoval A, Hernández-Ventura C, Klimova TE (2017) Titanate nanotubes for removal of methylene
blue dye by combined adsorption and photocatalysis. Fuel 198:22–30
Shokrlu YH, Babadagli T (2014) Viscosity reduction of heavy oil/bitumen using micro- and nanometal particles during aqueous and non-aqueous thermal applications. J Petrol Sci Eng 119:210–
220
Tiwari JN, Tiwari RN, Kim KS (2012) Zero-dimensional, one-dimensional, two-dimensional and
three-dimensional nanostructured materials for advanced electrochemical energy devices. Prog
Mater Sci 57:724–803
Wang Q, Guo L, Wang Z, Mu B, Guo A, Liu H (2012) Hydrogen donor visbreaking of Venezuelan
vacuum residue. J Fuel Chem Technol 40:1317–1322
Wang F, Zhang L, Xu L, Deng Z, Shi W (2017) Low temperature CO oxidation and CH 4 combustion
over Co 3 O 4 nanosheets. Fuel 203:419–429
255
Mironenko OO, Sosnin GA, Eletskii PM, Gulyaeva YK, Bulavchenko OA, Stonkus OA, Rodina
VO, Yakovlev VA (2017) Catalytic steam cracking of heavy crude oil with molybdenum and
nickel nanodispersed catalysts. Catal Ind 9:221–229
Mohammadi M, Akbari M, Fakhroueian Z, Bahramian A, Azin R, Arya S (2011) Inhibition of
asphaltene precipitation by TiO 2 , SiO 2 , and ZrO 2 nanofluids. Energy Fuels 25:3150–3156
Muraza O, Galadima A (2015) Aquathermolysis of heavy oil: a review and perspective on catalyst
development. Fuel 157:219–231
Nassar NN, Hassan A, Pereira-Almao P (2011) Application of nanotechnology for heavy oil
upgrading: catalytic steam gasification/cracking of asphaltenes. Energy Fuels 25:1566–1570
Nassar NN, Hassan A, Carbognani L, Lopez-Linares F, Pereira-Almao P (2012) Iron oxide nanoparticles for rapid adsorption and enhanced catalytic oxidation of thermally cracked asphaltenes. Fuel
95:257–262
Nguyen P, Fadaei H, Sinton D (2014) Pore-scale assessment of nanoparticle-stabilized CO 2 foam
for enhanced oil recovery. Energy Fuels 28:6221–6227
Patel H, Shah S, Ahmed R, Ucan S (2018) Effects of nanoparticles and temperature on heavy oil
viscosity. J Petrol Sci Eng 167:819–828
Ramírez-González PV (2016) Rheological behavior from light to heavy oils: construction of master
curves. Energy Fuels 30:7094–7099
Roth EA, Agarwal S, Gupta RK (2013) Nanoclay-based solid sorbents for CO 2 capture. Energy
Fuels 27:4129–4136
Rudyak V (2013) Viscosity of nanofluids. Why it is not described by the classical theories, Adv
Nanopart 2:266–279
Sandoval A, Hernández-Ventura C, Klimova TE (2017) Titanate nanotubes for removal of methylene
blue dye by combined adsorption and photocatalysis. Fuel 198:22–30
Shokrlu YH, Babadagli T (2014) Viscosity reduction of heavy oil/bitumen using micro- and nanometal particles during aqueous and non-aqueous thermal applications. J Petrol Sci Eng 119:210–
220
Tiwari JN, Tiwari RN, Kim KS (2012) Zero-dimensional, one-dimensional, two-dimensional and
three-dimensional nanostructured materials for advanced electrochemical energy devices. Prog
Mater Sci 57:724–803
Wang Q, Guo L, Wang Z, Mu B, Guo A, Liu H (2012) Hydrogen donor visbreaking of Venezuelan
vacuum residue. J Fuel Chem Technol 40:1317–1322
Wang F, Zhang L, Xu L, Deng Z, Shi W (2017) Low temperature CO oxidation and CH 4 combustion
over Co 3 O 4 nanosheets. Fuel 203:419–429
