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Molecular Reconstruction of Petroleum Fractions: Application to Vacuum Residues from Different OriginsPEREIRA DE OLIVEIRA, L; VAZQUEZ, A. Trujillo; VERSTRAETE, J. J et al.Energy & fuels. 2013, Vol 27, Num JULAOU, pp 3622-3641, issn 0887-0624, 20 p.Article

Vacuum unit design for high metals crudesGOLDEN, Scott W; BARLETTA, Tony; WHITE, Steve et al.Petroleum technology quarterly. 2007, Vol 12, Num 1, issn 1362-363X, 31-43 [7 p.]Article

Visbreaking vacuum residsSOMOV, V. E; ROZENTAL', D. A; SYROEZHKO, A. M et al.Chemistry and technology of fuels and oils. 1999, Vol 35, Num 1, pp 1-3, issn 0009-3092Article

Study on the technology of vacuum residue visbreaking with hydrogen donorsDENG WENAN; LIU DONG; ZHOU JIASHUN et al.Preprints - American Chemical Society. Division of Petroleum Chemistry. 2003, Vol 48, Num 4, pp 341-343, issn 0569-3799, 3 p.Article

Reliable Determination of Water Contents of Bitumen and Vacuum Residua via Coulometric Karl Fischer Titration Using TetrahydrofuranCARBOGNANI, L; ROA-FUENTES, L. C; DIAZ, L et al.Petroleum science and technology. 2014, Vol 32, Num 5-8, pp 602-609, issn 1091-6466, 8 p.Article

Calibration of a Delayed Coking UnitYAN, F; CAI, Y.Petroleum science and technology. 2008, Vol 26, Num 10-12, pp 1331-1338, issn 1091-6466, 8 p.Article

Solvent de-ashing from heavy product of brown coal liquefaction using toluene : 2. Concentration and separation of ash with a continuous de-ashing systemOKUMA, O; MASUDA, K; OKUYAMA, N et al.Fuel processing technology. 1998, Vol 56, Num 3, pp 229-241, issn 0378-3820Article

Research on nitrogen distribution in thermal conversion of vaccum residues : Separation and characterization of petroleumPING WEN; DAOYONG YU; GUOHE QUE et al.Preprints - American Chemical Society. Division of Petroleum Chemistry. 2002, Vol 47, Num 1, pp 11-13, issn 0569-3799Article

Effect of heavy asphaltene on stability of residual oilTOJIMA, M; SUHARA, S; IMAMURA, M et al.Preprints - American Chemical Society. Division of Petroleum Chemistry. 1997, Vol 42, Num 2, pp 504-507, issn 0569-3799Conference Paper

Influence of type of vacuum residue on the catalytic coprocessing of a demineralized Catalan ligniteBENGOA, C; FONT, J; MOROS, A et al.Fuel (Guildford). 1996, Vol 75, Num 11, pp 1327-1330, issn 0016-2361Article

Molecular simulation of structural relaxation for three different asphaltenesTAKANOHASHI, Toshimasa; SATO, Shinya; TANAKA, Ryuzo et al.Preprints - American Chemical Society. Division of Petroleum Chemistry. 2004, Vol 49, Num 1, pp 105-108, issn 0569-3799, 4 p.Article

Coprocessing von fossilen Rohstoffen mit Biomasse. I: Erdölvakuumrückstand mit Holz oder Lignin = Coprocessing of fossil fuels with biomasse. I: Vacuum residue with wood or ligninKREY, F; OELERT, H.-H.Erdöl, Erdgas, Kohle. 1995, Vol 111, Num 9, pp 371-376, issn 0179-3187Article

The Colloidal Characteristics of Blended CrudesLI, S; ZHANG, L; DING, L et al.Petroleum science and technology. 2011, Vol 29, Num 1-4, pp 88-96, issn 1091-6466, 9 p.Article

Effect of n-pentane and n-heptane insolubles on the pyrolysis of vacuum residueAVID, Budeebazar; SATO, Shinya; TAKANOHASHI, Toshimasa et al.Energy & fuels. 2006, Vol 20, Num 6, pp 2475-2477, issn 0887-0624, 3 p.Article

A geochemical framework for understanding residue propertiesVAN DEN BERG, F. G. A; HEIJNIS, R. M. A; STAMPS, P. A et al.Petroleum science and technology. 2003, Vol 21, Num 3-4, pp 449-460, issn 1091-6466, 12 p.Conference Paper

Molecular sizes and micellar sizes of asphaltenes in vacuum residuesWANG ZONGXIAN; GUO AIJUN; ZHANG LONGLI et al.Preprints - American Chemical Society. Division of Petroleum Chemistry. 2003, Vol 48, Num 3, pp 175-178, issn 0569-3799, 4 p.Conference Paper

Sensitivity of synergism between hydrogen donors and dispersed catalysts in different base residue hydrocracking : Symposium: Hydrogenation in Petroleum UpgradingSHI, Bin; GUO, Ai-Jun; QUE, Guo-He et al.Preprints - American Chemical Society. Division of Petroleum Chemistry. 2002, Vol 47, Num 2, pp 106-109, issn 0569-3799Article

Development of method for removing iron contaminants from feedstock for residual oil desulfurization (RDS) (Part 2) fundamental study of magnetic separation using model feedstockUSHIO, M; KAMIYA, K.Sekiyu Gakkai Shi. 1999, Vol 42, Num 5, pp 299-306, issn 0582-4664Article

Investigation of vacuum residue solubility in a C4 solventHENGFU SHUI; BENXIAN SHEN; JINSHENG GAO et al.Fuel (Guildford). 1998, Vol 77, Num 8, pp 885-889, issn 0016-2361Article

Pyrolysis mechanism of heavy oil model compoundsKAWAI, H; KUMATA, F.Preprints - American Chemical Society. Division of Petroleum Chemistry. 1997, Vol 42, Num 2, pp 406-410, issn 0569-3799Conference Paper

The shell residue hydroconversion process : Development and achievementsSCHEFFER, B; RÖBSCHLÄGER, K. W; DE BOKS, F. C et al.Preprints - American Chemical Society. Division of Petroleum Chemistry. 1997, Vol 42, Num 2, pp 347-350, issn 0569-3799Conference Paper

Thermal and catalytic hydrocracking of supercritical fluid-extracted vacuum residueGRAY, M. R; QIAN, X.-F; CHUNG, K et al.Preprints - American Chemical Society. Division of Petroleum Chemistry. 1997, Vol 42, Num 2, pp 359-363, issn 0569-3799Conference Paper

High-temperature n.m.r. analysis of aromatic units in asphaltenes and preasphaltenes derived from Victorian brown coalMASUDA, K; OKUMA, O; NISHIZAWA, T et al.Fuel (Guildford). 1996, Vol 75, Num 3, pp 295-299, issn 0016-2361Article

Hydrodenitrogenation of vacuum residue with a large-pore catalystYANG, D.-S; DUREAU, R; CHARLAND, J.-P et al.Fuel (Guildford). 1996, Vol 75, Num 10, pp 1199-1205, issn 0016-2361Article

Production of coke from scrap tire vacuum pyrolysis oilCHAALA, A; ROY, C.Fuel processing technology. 1996, Vol 46, Num 3, pp 227-239, issn 0378-3820Article

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