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SAR-AD Method to Characterize Eight SARA Fractions in Various Vacuum Residues and Follow Their Transformations Occurring during Hydrocracking and Pyrolysis
Asphaltenes of crude oils and bitumens: The similarities and differences
Yulia Ganeeva, Ekaterina Barskaya, Ekaterina Okhotnikova, Tatiana Yusupova, Vladimir Morozov and Gennady Romanov Petroleum Science and Technology 40(6) 734 (2022) https://doi.org/10.1080/10916466.2021.2006703
Reduction of Sulphur in Marine Residual Fuels by Deasphalting to Produce VLSFO
Radel Sultanbekov, Kirill Denisov, Aleksei Zhurkevich and Shamil Islamov Journal of Marine Science and Engineering 10(11) 1765 (2022) https://doi.org/10.3390/jmse10111765
Influence of Asphaltenes on the Low-Sulphur Residual Marine Fuels’ Stability
Ksenia I. Smyshlyaeva, Viacheslav A. Rudko, Vladimir G. Povarov, Alina A. Shaidulina, Ignaty Efimov, Renat R. Gabdulkhakov, Igor N. Pyagay and James G. Speight Journal of Marine Science and Engineering 9(11) 1235 (2021) https://doi.org/10.3390/jmse9111235
Distribution of Vanadium and Nickel During Sequential
Fractionation of Heavy Crude Oil Resins by Adsorption Chromatographic Separation and
Extraction
Tracking Changes in Asphaltene Nanoaggregate Size Distributions as a Function of Silver Complexation via Gel Permeation Chromatography Inductively Coupled Plasma Mass Spectrometry
Petroleum wellhead burning: A review of the basic science for burn efficiency prediction
Steven G. Tuttle, Brian T. Fisher, David A. Kessler, Christopher J. Pfützner, Rohit J. Jacob and Aaron W. Skiba Fuel 303 121279 (2021) https://doi.org/10.1016/j.fuel.2021.121279
Urease activity and microbial biomass of carbon in hydrocarbon contaminated soils. A case study of cheshmeh-khosh oil field, Iran
Influence of extractable organic matters on pore structure and its evolution of Chang 7 member shales in the Ordos Basin, China: Implications from extractions using various solvents
Yan Cao, Hui Han, Chen Guo, Peng Pang, Zhen-gang Ding and Yuan Gao Journal of Natural Gas Science and Engineering 79 103370 (2020) https://doi.org/10.1016/j.jngse.2020.103370
Preaggregation of Asphaltenes in the Presence of Natural Polymers by Molecular Dynamics Simulation
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
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
Assessment of bioremediation of aliphatic, aromatic, resin, and asphaltene fractions of oil-sludge-contaminated soil
D. Minai-Tehrani, P. Rohanifar and S. Azami International Journal of Environmental Science and Technology 12(4) 1253 (2015) https://doi.org/10.1007/s13762-014-0720-y
Incompatibility Determination of Crude Oil Blends from Experimental Viscosity and Density Data
José L. Mendoza de la Cruz, Juan C. Cedillo-Ramírez, Adriana de J. Aguirre-Gutiérrez, Fernando García-Sánchez and Marco A. Aquino-Olivos Energy & Fuels 29(2) 480 (2015) https://doi.org/10.1021/ef501512b
Characterization of Physically and Chemically Separated Athabasca Asphaltenes Using Small-Angle X-ray Scattering
Jesús Leonardo Amundaraín Hurtado, Martin Chodakowski, Bingwen Long and John M. Shaw Energy & Fuels 25(11) 5100 (2011) https://doi.org/10.1021/ef200887s
Structural features of asphaltene and petroleum resin fractions
Dielectric response as a function of viscosity for two crude oils with different conductivities
Cédric Lesaint, Øyvind Spets, Wilhelm R. Glomm, Sébastien Simon and Johan Sjöblom Colloids and Surfaces A: Physicochemical and Engineering Aspects 369(1-3) 20 (2010) https://doi.org/10.1016/j.colsurfa.2010.07.011
Asphaltene multilayer growth in porous medium probed by SANS