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Paraffin effects on the stability and precipitation of crude oil asphaltenes: Experimental onset determination and phase behavior approach
José Francisco Romero Yanes, Filipe Xavier Feitosa, Frederico Ribeiro do Carmo and Hosiberto Batista de Sant’Ana Fluid Phase Equilibria 474 116 (2018) https://doi.org/10.1016/j.fluid.2018.07.017
Role of mineral flotation technology in improving bitumen extraction from mined Athabasca oil sands: I. Flotation chemistry of water‐based oil sand extraction
Joe Zhou, Haihong Li, Liyan Zhao and Ross Chow The Canadian Journal of Chemical Engineering 96(9) 1986 (2018) https://doi.org/10.1002/cjce.23139
Could the Asphaltene Solubility Class Index Be Used as the “Wax Appearance Temperature” of Asphaltenes? Illustration through the Study of the Polydispersity of PetroPhase 2017 Asphaltenes
Effect of microwave irradiation on the viscosity of crude oil: A view at the molecular level
Hui Shang, Yude Yue, Jie Zhang, Jiawei Wang, Quan Shi, Wenhui Zhang, Lu Liu and Sainab Omar Fuel Processing Technology 170 44 (2018) https://doi.org/10.1016/j.fuproc.2017.10.021
The control of asphaltene precipitation in oil wells
Advanced Solid Catalysts for Renewable Energy Production
Serbia Maria Antonieta Rodulfo Baechler, Sergio Gonzalez-Cortes, Tiancun Xiao, Hamid A. Al-Megren and Peter P. Edwards Advances in Chemical and Materials Engineering, Advanced Solid Catalysts for Renewable Energy Production 61 (2018) https://doi.org/10.4018/978-1-5225-3903-2.ch003
H.. Liao, M.. Morte, E.. Bloom, G.. Huff and B.. Hascakir (2018) https://doi.org/10.2118/190089-MS
A Matrix‐Matched Reference Material for Validating Petroleum Re‐Os Measurements
Comparing Crude Oils with Different API Gravities on a Molecular Level Using Mass Spectrometric Analysis. Part 2: Resins and Asphaltenes
Jandyson M. Santos, Alessandro Vetere, Alberto Wisniewski, Marcos N. Eberlin and Wolfgang Schrader Energies 11(10) 2767 (2018) https://doi.org/10.3390/en11102767
Understanding desorption of oil fractions from mineral surfaces
Flocculation of Asphaltenes by Polymers: Influence of Polymer Solubility Conditions
Claudia P. P. Mazzeo, Flaviane A. Stedille, Claudia R. E. Mansur, Antônio C. S. Ramos and Elizabete F. Lucas Energy & Fuels 32(2) 1087 (2018) https://doi.org/10.1021/acs.energyfuels.7b02577
Comparison of Experimental Techniques for Evaluation of Chemistries against Asphaltene Aggregation and Deposition: New Application of High-Pressure and High-Temperature Quartz Crystal Microbalance
Lube oil from blends of Nigerian Escravos light and Agbabu bitumen by empirical modeling
Aminu Bayawa Muhammad, Ismaila Mudi, Abdullahi Muhammad Sokoto, Garba Musa Argungu and Muhammad Nurudeen Almustapha Petroleum Science and Technology 36(23) 1968 (2018) https://doi.org/10.1080/10916466.2018.1522338
Analysis of the thermal hydrocracking of heavy fuel oil
Residency of rhenium and osmium in a heavy crude oil
Jenna M. DiMarzio, Svetoslav V. Georgiev, Holly J. Stein and Judith L. Hannah Geochimica et Cosmochimica Acta 220 180 (2018) https://doi.org/10.1016/j.gca.2017.09.038
Effect of Model Polycyclic Aromatic Compounds on the Coalescence of Water-in-Oil Emulsion Droplets
Features of the composition of asphaltenes and resins of high-viscosity oil and super viscous oil from deposits of Tatarstan
Светлана Габидуллиновна Якубова, Гузалия Рашидовна Абилова, Эльвира Габидулловна Тазеева, Кирилл Олегович Синяшин, Дмитрий Валерьевич Милордов, Дмитрий Николаевич Борисов, Павел Иванович Грязнов, Николай Александрович Миронов, Юлия Юрьевна Борисова and Махмут Ренатович Якубов Нефтяная провинция (4(12)) 31 (2017) https://doi.org/10.25689/NP.2017.4.31-55
Transition metal oxide nanoparticles as surfaces for surface-assisted laser desorption/ionization mass spectrometry of asphaltenes
Remoción de hidrocarburos de aguas de producción de la industria petrolera utilizando nanointermedios compuestos por SiO2 funcionalizados con nanopartículas magnéticas
Metal Oxide Nanoparticles Supported on Macro-Mesoporous Aluminosilicates for Catalytic Steam Gasification of Heavy Oil Fractions for On-Site Upgrading
Daniel López, Lady J. Giraldo, Juan P. Salazar, Dioni M. Zapata, Diana C. Ortega, Camilo A. Franco and Farid B. Cortés Catalysts 7(11) 319 (2017) https://doi.org/10.3390/catal7110319
Experimental investigation of CO2-oil interactions in tight rocks: A Montney case study
Characterization of crude oil asphaltenes by coupling size‐exclusion chromatography directly to an ultrahigh‐resolution mass spectrometer
Thierry Ghislain, Lilla Molnárné Guricza and Wolfgang Schrader Rapid Communications in Mass Spectrometry 31(6) 495 (2017) https://doi.org/10.1002/rcm.7814
Partially Oxidized Asphaltene as a Bitumen Viscosity Reducer
An ITC and NMR study of interaction and complexation of asphaltene model compounds in apolar solvent I: Self-association pattern
Sébastien Simon, Duo Wei, Mathilde Barriet and Johan Sjöblom Colloids and Surfaces A: Physicochemical and Engineering Aspects 494 108 (2016) https://doi.org/10.1016/j.colsurfa.2016.01.018
Synthesis and Aggregation Behavior of Chiral Naphthoquinoline Petroporphyrin Asphaltene Model Compounds
Matthias Schulze, Alexander Scherer, Frank Hampel, Jeffrey M. Stryker and Rik R. Tykwinski Chemistry – A European Journal 22(10) 3378 (2016) https://doi.org/10.1002/chem.201504683
Re–Os dating of maltenes and asphaltenes within single samples of crude oil
Effect of Asphaltenes and Resins on Asphaltene Aggregation Inhibition, Rheological Behaviour and Waterflood Oil-Recovery
Luis A. Alcázar-Vara, Luis S. Zamudio-Rivera and Eduardo Buenrostro-González Journal of Dispersion Science and Technology 37(11) 1544 (2016) https://doi.org/10.1080/01932691.2015.1116082
Interfacial and Emulsion Stabilizing Properties of Indigenous Acidic and Esterified Asphaltenes
Competitive Adsorption of Naphthenic Acids and Polyaromatic Molecules at a Toluene–Water Interface
Robel B. Teklebrhan, Cuiying Jian, Phillip Choi, Zhenghe Xu and Johan Sjöblom The Journal of Physical Chemistry B 120(50) 12901 (2016) https://doi.org/10.1021/acs.jpcb.6b07938
Rheological and chemical characterization of deoiled asphalt modified with FCC slurry
Study of the effect of temperature and gas condensate addition on the viscosity of heavy oils
João Felipe P. Bassane, Cristina M.S. Sad, Dorval M.C. Neto, Francine D. Santos, Mayara Silva, Fabricio C. Tozzi, Paulo R. Filgueiras, Eustaquio V.R. de Castro, Wanderson Romão, Maria F.P. Santos, José Olegário R. da Silva and Valdemar Lacerda Journal of Petroleum Science and Engineering 142 163 (2016) https://doi.org/10.1016/j.petrol.2016.02.006
Investigation of the Fluid Behavior of Asphaltenes and Toluene Insolubles by High-Temperature Proton Nuclear Magnetic Resonance and Rheometry and Their Application to Visbreaking
Evaluation of nanoemulsions based on silicone polyethers for demulsification of asphaltene model emulsions
Assis Koppe da Fraga, Priscila F. Oliveira, Luis Fernando S. Oliveira, Jennifer Magalhães and Claudia R. E. Mansur Journal of Applied Polymer Science 133(44) (2016) https://doi.org/10.1002/app.44174
Characterization of Crude Oil, Asphaltenes Based on Bismuth (Bi), Thorium (Th) and Uranium (U) Levels: Potential Environmental Impact
Role of Naphthenic Acids in Controlling Self-Aggregation of a Polyaromatic Compound in Toluene
Robel B. Teklebrhan, Cuiying Jian, Phillip Choi, Zhenghe Xu and Johan Sjöblom The Journal of Physical Chemistry B 120(14) 3516 (2016) https://doi.org/10.1021/acs.jpcb.5b10082
Influence of pH on Oil-Water Interfacial Tension and Mass Transfer for Asphaltenes Model Oils. Comparison with Crude Oil Behavior
Anthony Hutin, Jean-François Argillier and Dominique Langevin Oil & Gas Science and Technology – Revue d’IFP Energies nouvelles 71(4) 58 (2016) https://doi.org/10.2516/ogst/2016013
Study of flocculation and sedimentation of asphaltenes in heavy oil by uv-spectrophotometric kinematic analisis
Махмут Ренатович Якубов, Дмитрий Николаевич Борисов, Светлана Габидуллиновна Якубова, Гузалия Рашидовна Абилова and Дмитрий Валерьевич Милордов Нефтяная провинция (2(6)) 80 (2016) https://doi.org/10.25689/NP.2016.2.80-97
Asphaltene Separation with Designer Solvents for the Deasphaltenes Process-A Quantum Chemical Approach