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Establishing the Maximum Carbon Number for Reliable Quantitative Gas Chromatographic Analysis of Heavy Ends Hydrocarbons. Part 2. Migration and Separation Gas Chromatography Modeling
Diana M. Hernandez-Baez, Alastair Reid, Antonin Chapoy, Bahman Tohidi and Roda Bounaceur Energy & Fuels 27(4) 2336 (2013) https://doi.org/10.1021/ef302009n
High Temperature Simulated Distillation of Bitumen Fractions with Open Tubular Capillary Columns Depleted in Silicone/Siloxane Stationary Phases
Lante Carbognani, Josune Carbognani Arambarri, Hebert Molero and Pedro Pereira-Almao Energy & Fuels 27(4) 2033 (2013) https://doi.org/10.1021/ef400012e
Fractionation and Characterization of a Petroleum Residue by Molecular Distillation Process
Erica R. L. Rocha, Melina S. Lopes, Maria Regina Wolf Maciel, Rubens Maciel Filho and Lilian C. Medina Industrial & Engineering Chemistry Research 52(44) 15488 (2013) https://doi.org/10.1021/ie400669k
Feasability of neat carbon dioxide packed column comprehensive two dimensional supercritical fluid chromatography
Establishing the Maximum Carbon Number for Reliable Quantitative Gas Chromatographic Analysis of Heavy Ends Hydrocarbons. Part 1: Low-Conversion Thermal Cracking Modeling
Diana M. Hernandez-Baez, Bahman Tohidi, Antonin Chapoy, Roda Bounaceur and Alastair Reid Energy & Fuels 26(5) 2600 (2012) https://doi.org/10.1021/ef201372q
Feasibility of ultra high performance supercritical neat carbon dioxide chromatography at conventional pressures
Cédric Sarazin, Didier Thiébaut, Patrick Sassiat and Jérôme Vial Journal of Separation Science 34(19) 2773 (2011) https://doi.org/10.1002/jssc.201100332
High-temperature two-dimensional gas chromatography of hydrocarbons up to nC60 for analysis of vacuum gas oils
High Temperature Simulated Distillation of Athabasca Vacuum Residue Fractions. Bimodal Distributions and Evidence for Secondary “On-Column” Cracking of Heavy Hydrocarbons
Lante Carbognani, Joaquin Lubkowitz, Manuel F. Gonzalez and Pedro Pereira-Almao Energy & Fuels 21(5) 2831 (2007) https://doi.org/10.1021/ef070106g