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Original Articles

Asphaltene Self‐Association

Pages 5-8 | Published online: 23 Aug 2007

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (10)

Chia-Yu Chen, Yuanyuan Wang, Andrew Gibbs & Kyriakos D. Papadopoulos. (2022) Time-dependence of asphaltene dispersion by marine cylinder lubricants (MCL) surfactants. Journal of Dispersion Science and Technology 43:1, pages 61-69.
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Abolhasan Ameri, Feridun Esmaeilzadeh & Dariush Mowla. (2018) Effect of low-salinity water on asphaltene precipitation. Journal of Dispersion Science and Technology 39:7, pages 1031-1039.
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Narjes Setoodeh, Parviz Darvishi & Feridun Esmaeilzadeh. (2018) Adsorption of asphaltene from crude oil by applying polythiophene coating on Fe3O4 nanoparticles. Journal of Dispersion Science and Technology 39:4, pages 578-588.
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Narjes Setoodeh, Parviz Darvishi & Asghar Lashanizadegan. (2018) Enhancing of asphaltene adsorption onto Fe3O4 nanoparticles coated with metal-organic framework Mil-101 (Cr) for the inhibition of asphaltene precipitation. Journal of Dispersion Science and Technology 39:3, pages 452-459.
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Hamidreza Asaadian, Bahram Soltani Soulgani & Ali Karimi. (2017) An experimental study on electrical effect on asphaltene deposition. Petroleum Science and Technology 35:24, pages 2255-2261.
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S. Kananpanah, R. Kheirkhah, M. Bayat, M. Sadi & M. Ali Moosavian. (2017) Comparison of asphaltene structure and morphology under different deasphaltene methods. Petroleum Science and Technology 35:5, pages 457-464.
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Z. Wang, H. Liu, X. Sun, S. Ji, A. Guo & K. Chen. (2015) Compatibility of Heavy Blends Evaluated by Fouling and Its Relationship With Colloidal Stability. Petroleum Science and Technology 33:6, pages 686-693.
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I.N. Evdokimov. (2007) T-C Phase Diagram of Asphaltenes in Solutions. Petroleum Science and Technology 25:1-2, pages 5-17.
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Farid R. Zaggout. (2005) Encapsulation of Bromocresol Green pH Indicator into a Sol‐Gel Matrix. Journal of Dispersion Science and Technology 26:6, pages 757-761.
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Gisle Øye, Anne Silset, Magne Knag, Bodhild Øvrevoll & Johan Sjöblom. (2005) Plasmachemical Modification of Asphaltenes and How It Influences Their Aggregation Behavior. Journal of Dispersion Science and Technology 26:6, pages 665-671.
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Articles from other publishers (44)

Rafael Nascimento Gonçalves dos Santos, Eduardo Rocha de Almeida Lima & Márcio Luís Lyra Paredes. (2022) Solubility of asphaltenes samples in polar and apolar synthetic mixtures: experimental and modeling. Brazilian Journal of Chemical Engineering 40:2, pages 585-597.
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Rui-Ying Xiong, Ji-Xiang Guo, Wyclif Kiyingi, Hai-Xia Xu & Xin-Peng Wu. (2023) The deposition of asphaltenes under high-temperature and high-pressure (HTHP) conditions. Petroleum Science 20:1, pages 611-618.
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Natã C. L. Madeira, Valdemar LacerdaJr.Jr. & Wanderson Romão. (2022) Characterization of Asphalt Aging by Analytical Techniques: A Review on Progress and Perspectives. Energy & Fuels 36:11, pages 5531-5549.
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Phillip Choi. (2021) On the applicability of regular solution and Flory‐Huggins theories to asphaltene liquid mixtures . The Canadian Journal of Chemical Engineering 100:6, pages 1374-1383.
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Yajian Wang, Wentao Wang & Linbing Wang. (2022) Understanding the relationships between rheology and chemistry of asphalt binders: A review. Construction and Building Materials 329, pages 127161.
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Anatoly A. Velikov. Estimation of the enthalpy of asphaltene aggregation. Estimation of the enthalpy of asphaltene aggregation.
M.A. Zúñiga-Hinojosa, A. Cosultchi, M.T. Martinez-Martinez, R.D. Cadena-Nava & J. Ruiz-Garcia. (2022) Behavior comparison of films of Mexican bitumen and its asphaltene and maltenes fractions at interfaces. Fuel 307, pages 121852.
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Tatiana Montoya, Archana Jaiswal & Nashaat N. Nassar. (2021) Investigation of the interaction between nanoparticles, asphaltenes, and silica surfaces by real‐time quartz crystal microbalance with dissipation. The Canadian Journal of Chemical Engineering 99:11, pages 2452-2466.
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Afeez Oluwatobi Yusuff, Noorhana Yahya, Mohd Azman Zakariya & Surajudeen Sikiru. (2021) Investigations of graphene impact on oil mobility and physicochemical interaction with sandstone surface. Journal of Petroleum Science and Engineering 198, pages 108250.
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Yulia M. Ganeeva, Ekaterina E. Barskaya, Ekaterina S. Okhotnikova & Tatiana N. Yusupova. (2021) Features of the Composition of Compounds Trapped in Asphaltenes of Oils and Bitumens of the Bavly Oil Field. Energy & Fuels 35:3, pages 2493-2505.
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Isah Mohammed, Mohamed Mahmoud, Dhafer Al Shehri, Ammar El-Husseiny & Olalekan Alade. (2021) Asphaltene precipitation and deposition: A critical review. Journal of Petroleum Science and Engineering 197, pages 107956.
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Bernardo Carreón-Calderón, Verónica Uribe-Vargas & Juan Pablo AguayoBernardo Carreón-Calderón, Verónica Uribe-Vargas & Juan Pablo Aguayo. 2021. Thermophysical Properties of Heavy Petroleum Fluids. Thermophysical Properties of Heavy Petroleum Fluids 177 271 .
Natã C. L. Madeira, Karla P. Rainha, Janur Mendonça, Valdemar LacerdaJr.Jr., Luiz S. ChinelattoJr.Jr., Sonia M. C. de Menezes, Christiane F. de C. Porto, Fernanda E. Pinto, Paulo R. Filgueiras, Wanderson Romão & Álvaro C. Neto. (2020) Study of the Influence of Resins on the Asphaltene Aggregates by 1 H DOSY NMR . Energy & Fuels 34:5, pages 5679-5688.
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Peiqi Qiao, David Harbottle, Zuoli Li, Yuechao Tang & Zhenghe Xu. (2018) Interactions of Asphaltene Subfractions in Organic Media of Varying Aromaticity. Energy & Fuels 32:10, pages 10478-10485.
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Sara Panahi, Ali Reza Sardarian, Feridun Esmaeilzadeh & Dariush Mowla. (2018) Synthesize and characterization of chitosan and silica supported on Fe 3 O 4 nanoparticles for the adsorption and removal of asphaltene molecules from crude oil . Materials Research Express 5:9, pages 095022.
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Jiang Wang, Mohit Gayatri & Andrew L. Ferguson. (2018) Coarse-Grained Molecular Simulation and Nonlinear Manifold Learning of Archipelago Asphaltene Aggregation and Folding. The Journal of Physical Chemistry B 122:25, pages 6627-6647.
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Han-Beyol Park, Ki-Duk Kim & Yong-Kul Lee. (2018) Promoting asphaltene conversion by tetralin for hydrocracking of petroleum pitch. Fuel 222, pages 105-113.
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Jing Liu, Jingyi Wang, Jun Huang, Xin Cui, Xiaoli Tan, Qi Liu & Hongbo Zeng. (2017) Heterogeneous Distribution of Adsorbed Bitumen on Fine Solids from Solvent-Based Extraction of Oil Sands Probed by AFM. Energy & Fuels 31:9, pages 8833-8842.
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Peiqi Qiao, David Harbottle, Plamen Tchoukov, Jacob Masliyah, Johan Sjoblom, Qingxia Liu & Zhenghe Xu. (2017) Fractionation of Asphaltenes in Understanding Their Role in Petroleum Emulsion Stability and Fouling. Energy & Fuels 31:4, pages 3330-3337.
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Sreedhar Subramanian, Geir Humborstad Sørland, Sébastien Simon, Zhenghe Xu & Johan Sjöblom. (2017) Asphaltene fractionation based on adsorption onto calcium carbonate: Part 2. Self-association and aggregation properties. Colloids and Surfaces A: Physicochemical and Engineering Aspects 514, pages 79-90.
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Maria Magdalena Ramirez-Corredores. 2017. The Science and Technology of Unconventional Oils. The Science and Technology of Unconventional Oils 41 222 .
Mohammad Amin Rahimi, Ahmad Ramazani S.A, Hossein Alijani Alijanvand, Mohammad Hossein Ghazanfari & Mahdi Ghanavati. (2017) Effect ­­­­­of ultrasonic irradiation treatment on rheological behaviour of extra heavy crude oil: A solution method for transportation improvement. The Canadian Journal of Chemical Engineering 95:1, pages 83-91.
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E. V. Morozov & O. N. Martyanov. (2015) Probing Flocculant-Induced Asphaltene Precipitation via NMR Imaging: from Model Toluene-Asphaltene Systems to Natural Crude Oils. Applied Magnetic Resonance 47:2, pages 223-235.
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James G. Speight. 2016. Introduction to Enhanced Recovery Methods for Heavy Oil and Tar Sands. Introduction to Enhanced Recovery Methods for Heavy Oil and Tar Sands 123 175 .
Fan Yang, Plamen Tchoukov, Heather Dettman, Robel B. Teklebrhan, Lan Liu, Tadeusz Dabros, Jan Czarnecki, Jacob Masliyah & Zhenghe Xu. (2015) Asphaltene Subfractions Responsible for Stabilizing Water-in-Crude Oil Emulsions. Part 2: Molecular Representations and Molecular Dynamics Simulations. Energy & Fuels 29:8, pages 4783-4794.
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Lin HeFeng Lin, Xingang Li, Hong Sui & Zhenghe Xu. (2015) Interfacial sciences in unconventional petroleum production: from fundamentals to applications. Chemical Society Reviews 44:15, pages 5446-5494.
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James G. Speight. 2015. Fouling in Refineries. Fouling in Refineries 129 154 .
Marco A. Satyro, John M. Shaw & Harvey W. Yarranton. (2013) A practical method for the estimation of oil and water mutual solubilities. Fluid Phase Equilibria 355, pages 12-25.
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G. S. Martynova, Ad. A. Aliev, F. R. Babaev & I. S. Guliev. (2013) Nanocolloid structures in crude oils from the mud volcanoes of Azerbaijan. Geochemistry International 51:9, pages 764-766.
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Lin He, Xingang Li, Guozhong Wu, Feng Lin & Hong Sui. (2013) Distribution of Saturates, Aromatics, Resins, and Asphaltenes Fractions in the Bituminous Layer of Athabasca Oil Sands. Energy & Fuels 27:8, pages 4677-4683.
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Marzie Derakhshesh, Murray R. Gray & Greg P. Dechaine. (2013) Dispersion of Asphaltene Nanoaggregates and the Role of Rayleigh Scattering in the Absorption of Visible Electromagnetic Radiation by These Nanoaggregates. Energy & Fuels 27:2, pages 680-693.
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Xingang Li, Lin He, Guozhong Wu, Wenjun Sun, Hong Li & Hong Sui. (2012) Operational Parameters, Evaluation Methods, And Fundamental Mechanisms: Aspects of Nonaqueous Extraction of Bitumen from Oil Sands. Energy & Fuels 26:6, pages 3553-3563.
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Jesús Leonardo Amundaraín Hurtado, Martin Chodakowski, Bingwen Long & John M. Shaw. (2011) Characterization of Physically and Chemically Separated Athabasca Asphaltenes Using Small-Angle X-ray Scattering. Energy & Fuels 25:11, pages 5100-5112.
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H. W. Yarranton, F. S. Schoeggl, S. George & S. D. Taylor. (2011) Asphaltene-Rich Phase Compositions and Sediment Volumes from Drying Experiments. Energy & Fuels 25:8, pages 3624-3633.
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Mariana Barcenas & Pedro Orea. (2011) Molar-Mass Distributions of Asphaltenes in the Presence of Inhibitors: Experimental and Computer Calculations. Energy & Fuels 25:5, pages 2100-2108.
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Richard A. McFarlane, Murray R. Gray & John M. Shaw. (2010) Evaluation of co-volume mixing rules for bitumen liquid density and bubble pressure estimation. Fluid Phase Equilibria 293:1, pages 87-100.
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Zhidong Li & Abbas Firoozabadi. (2010) Modeling Asphaltene Precipitation by n -Alkanes from Heavy Oils and Bitumens Using Cubic-Plus-Association Equation of State . Energy & Fuels 24:2, pages 1106-1113.
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J. Alberto Murillo-Hernández, Isidoro García-Cruz, Simón López-Ramírez, C. Duran-Valencia, J. Manuel Domínguez & Jorge Aburto. (2009) Aggregation Behavior of Heavy Crude Oil−Ionic Liquids Solutions by Fluorescence Spectroscopy. Energy & Fuels 23:9, pages 4584-4592.
Crossref
Bei ZhaoM. BecerraJ. M. Shaw. (2009) On Asphaltene and Resin Association in Athabasca Bitumen and Maya Crude Oil. Energy & Fuels 23:9, pages 4431-4437.
Crossref
Malcolm Kelland. 2009. Production Chemicals for the Oil and Gas Industry. Production Chemicals for the Oil and Gas Industry.
Farid R. Zaggout, Abed El-Fattah A. Qarraman & Shehata M. Zourab. (2007) Behavior of immobilized Alizarin Red S into sol–gel matrix as pH sensor. Materials Letters 61:19-20, pages 4192-4195.
Crossref
Mariana Barcenas & Yurko Duda. (2007) Irreversible colloidal agglomeration in presence of associative inhibitors: Computer simulation study. Physics Letters A 365:5-6, pages 454-457.
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Jun Long, Zhenghe Xu & Jacob H. Masliyah. (2007) Single Molecule Force Spectroscopy of Asphaltene Aggregates. Langmuir 23:11, pages 6182-6190.
Crossref
Igor N. Evdokimov, Nikolaj Yu. Eliseev, Aleksandr P. Losev & Mikhail A. Novikov. (2006) Emerging Petroleum-Oriented Nanotechnologies for Reservoir Engineering. Emerging Petroleum-Oriented Nanotechnologies for Reservoir Engineering.

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