doi: 10.5478/MSL.2011.2.2.041


Compositional Characterization of Petroleum Heavy Oils Generated from Vacuum Distillation and Catalytic Cracking by Positive-mode APPI FT-ICR Mass Spectrometry

  • Eun-Kyoung Kim,
  • Myoung-Han No,
  • Jae-Suk Koh,
  • Sunghwan Kim

피인용문헌(Cited by)

  • . "Application of Phase Correction to Improve the Interpretation of Crude Oil Spectra Obtained Using 7 T Fourier Transform Ion Cyclotron Resonance Mass Spectrometry" Journal of the American Society for Mass Spectrometry, vol. 25(1), p.154-. 2014. doi:10.1007/s13361-013-0747-1
  • . "Fouling at post desalter and preflash drum heat exchangers of CDU preheat train" Applied thermal engineering, vol. 89 p.783-. 2015. doi:10.1016/j.applthermaleng.2015.06.045
  • . "Atmospheric pressure ionization for gas chromatography-high resolution mass spectrometry determination of polychlorinated naphthalenes in marine sediments" Chemosphere, vol. 263 p.127963-. 2021. doi:10.1016/j.chemosphere.2020.127963
  • . "Molecular characterization of sulfur-containing compounds in petroleum" Fuel, vol. 221 p.144-. 2018. doi:10.1016/j.fuel.2018.02.110
  • . "Investigation on sediment formation in residue thermal conversion based processes" Fuel processing technology, vol. 128 p.509-. 2014. doi:10.1016/j.fuproc.2014.08.013
  • . "Characterization of heme ions using MALDI-TOF MS and MALDI FT-ICR MS" International journal of mass spectrometry, vol. 343 p.37-. 2013. doi:10.1016/j.ijms.2013.03.014
  • . "Pyrolysis of heavy fuel oil (HFO) - A review on physicochemical properties and pyrolytic decomposition characteristics for application in novel, industrial-scale HFO pyrolysis technology" Journal of analytical and applied pyrolysis, vol. 179 p.106432-. 2024. doi:10.1016/j.jaap.2024.106432
  • . "Semiquantitative Molecular Characterization of Crude Oil" Energy & fuels : an American Chemical Society journal, vol. 38(5), p.3769-. 2024. doi:10.1021/acs.energyfuels.3c05086
  • . "Structural Level Characterization of Base Oils Using Advanced Analytical Techniques" Energy & fuels : an American Chemical Society journal, vol. 29(5), p.2962-. 2015. doi:10.1021/acs.energyfuels.5b00038
  • . "TG/DTG, FT-ICR Mass Spectrometry, and NMR Spectroscopy Study of Heavy Fuel Oil" Energy & fuels : an American Chemical Society journal, vol. 29(12), p.7825-. 2015. doi:10.1021/acs.energyfuels.5b01739
  • . "Evaluation of Adsorbent Materials for the Removal of Nitrogen Compounds in Vacuum Gas Oil by Positive and Negative Electrospray Ionization Fourier Transform Ion Cyclotron Resonance Mass Spectrometry" Energy & fuels : an American Chemical Society journal, vol. 31(4), p.3454-. 2017. doi:10.1021/acs.energyfuels.6b02566
  • . "Understanding Shale Oil Hydrotreatment with Composition Analysis Using Positive-Ion Mode Atmospheric Pressure Photoionization Fourier Transform Ion Cyclotron Resonance Mass Spectrometry" Energy & fuels : an American Chemical Society journal, vol. 31(2), p.1362-. 2017. doi:10.1021/acs.energyfuels.6b02807
  • . "Upgrading Heavy Crude Oils and Extra Heavy Fractions in Supercritical Methanol" Energy & fuels : an American Chemical Society journal, vol. 31(11), p.12054-. 2017. doi:10.1021/acs.energyfuels.7b02524
  • . "Evaluation of Polycyclic Aromatic Hydrocarbon Removal from Hydrocracking Recycle Streams" Energy & fuels : an American Chemical Society journal, vol. 34(1), p.179-. 2020. doi:10.1021/acs.energyfuels.9b03382
  • . "Linking Natural Oil Seeps from the Gulf of Mexico to Their Origin by Use of Fourier Transform Ion Cyclotron Resonance Mass Spectrometry" Environmental science & technology, vol. 52(3), p.1365-. 2018. doi:10.1021/acs.est.7b04445
  • . "Molecular-Level-Process Model with Feedback of the Heat Effects on a Complex Reaction Network in a Fluidized Catalytic Cracking Process" Industrial & engineering chemistry research, vol. 56(13), p.3568-. 2017. doi:10.1021/acs.iecr.7b00320
  • . "A Rheological and Chemical Investigation of Canadian Heavy Oils From the McMurray Formation" Energy & fuels : an American Chemical Society journal, vol. 26(7), p.4445-. 2012. doi:10.1021/ef300608w
  • . "Molecular Characterization of Formulated Lubricants and Additive Packages Using Kendrick Mass Defect Determined by Fourier Transform Ion Cyclotron Resonance Mass Spectrometry" Journal of the American Society for Mass Spectrometry, vol. 33(7), p.1194-. 2022. doi:10.1021/jasms.2c00050
  • . "Structural analysis of heavy oil fractions after hydrodenitrogenation by high-resolution tandem mass spectrometry and ion mobility spectrometry" Faraday discussions, vol. 218 p.417-. 2019. doi:10.1039/C8FD00239H
  • . "A kinetic model for in situ coking denitrification of heavy oil with high nitrogen content based on starch using a structure-oriented lumping method" RSC advances, vol. 8(57), p.32707-. 2018. doi:10.1039/C8RA05561K
  • . "Elimination of the Ion-Molecule Association in Electrospray High-Resolution Mass Spectrometry Analyses for Petroleum Fractions" Energies, vol. 16(9), p.3796-. 2023. doi:10.3390/en16093796
  • . "Characterization of Base Oil and Additive Oxidation Products from Formulated Lubricant by Ultra-High Resolution Mass Spectrometry" Lubricants, vol. 11(8), p.345-. 2023. doi:10.3390/lubricants11080345
  • . "Hydrocracking of Heavy Fischer–Tropsch Wax Distillation Residues and Its Blends with Vacuum Gas Oil Using Phonolite-Based Catalysts" Molecules, vol. 26(23), p.7172-. 2021. doi:10.3390/molecules26237172
  • . "Application of Comprehensive 2D GC-MS and APPI FT-ICR MS for More Complete Understanding of Chemicals in Diesel Fuel" Mass spectrometry letters, vol. 3(2), p.43-. 2012. doi:10.5478/MSL.2012.3.2.43