1 |
Crude oil polar chemical composition derived from FT-ICR mass spectrometry accounts for asphaltene inhibitor specificity Smith DF, Klein GC, Yen AT, Squicciarini MP, Rodgers RP, Marshall AG Energy & Fuels, 22(5), 3112, 2008 |
2 |
Use of saturates/aromatics/resins/asphaltenes (SARA) fractionation to determine matrix effects in crude oil analysis by electrospray ionization Fourier transform ion cyclotron resonance mass spectrometry Klein GC, Angstrom A, Rodgers RP, Marshall AG Energy & Fuels, 20(2), 668, 2006 |
3 |
Comprehensive compositional analysis of hydrotreated and untreated nitrogen-concentrated fractions from syncrude oil by electron ionization, field desorption ionization, and electrospray ionization ultrahigh-resolution FT-ICR mass spectrometry Fu JM, Klein GC, Smith DF, Kim S, Rodgers RP, Hendrickson CL, Marshall AG Energy & Fuels, 20(3), 1235, 2006 |
4 |
Mass spectral analysis of asphaltenes. I. Compositional differences between pressure-drop and solvent-drop asphaltenes determined by electrospray ionization Fourier transform ion cyclotron resonance mass spectrometry Klein GC, Kim S, Rodgers RP, Marshall AG Energy & Fuels, 20(5), 1965, 2006 |
5 |
Mass spectral analysis of asphaltenes. II. Detailed compositional comparison of asphaltenes deposit to its crude oil counterpart for two geographically different crude oils by ESI FT-ICR MS Klein GC, Kim S, Rodgers RP, Marshall AG, Yen A Energy & Fuels, 20(5), 1973, 2006 |
6 |
Oil reservoir characterization via crude oil analysis by downhole fluid analysis in oil wells with visible-near-infrared spectroscopy and by laboratory analysis with electrospray ionization Fourier transform ion cyclotron resonance mass spectrometry Mullins OC, Rodgers RP, Weinheber P, Klein GC, Venkataramanan L, Andrews AB, Marshall AG Energy & Fuels, 20(6), 2448, 2006 |
7 |
Identification of hydrotreatment-resistant heteroatomic species in a crude oil distillation cut by electrospray ionization FT-ICR mass spectrometry Klein GC, Rodgers RP, Marshall AG Fuel, 85(14-15), 2071, 2006 |