000 02586nab a2200205 4500
005 20260520000839.0
008 260224s2009 xxu
245 0 0 _aCompositional study of polar species in untreated and hydrotreated gas oil samples by electrospray ionization Fourier Transform ion cyclotron resonance mass spectrometry (ESI FTICR-MS)
260 _a
_b
_cnov./dic. 2009
270 _a09/06/2010 ; 09/06/2010
300 _a7 p. ; 6055-6061
520 _aTranscripción del resumen del autor. Two gas oil samples, untreated feed and hydrotreated product oil, were analyzed. Both basic and acidic polar species were detected by electrospray ionization (ESI) Fourier transform ion cyclotron resonance mass spectrometry, and the detected species were characterized on the basis of their elemental compositions. Samples were real refinery samples, with one sample being a certain distillation fraction of crude oil (feed) and the other sample being a hydrotreated feed oil (product). Comparison of the compositions of untreated and hydrotreated oil provides insight into (1) compounds that are resistant to processing, (2) compounds that are removed/degraded by processing, and (3) new compounds that are produced during processing. N1 class compounds were found to be the most abundant basic species in both oil samples. In addition, the proportion of N1 class compounds was clearly greater in the product oil than in the feed oil, which indicates that these basic species must be resistant to removal by hydrotreatment. All basic NxOy-, NxSz-, and NxOySz-containing compounds that were detected in the feed oil were completely removed by hydrotreatment. However, some of the OySz compounds remained in the oil after hydrotreatment. Negative-ion ESI revealed that the majority of the acidic polar species in the product sample were N1 compounds, which was also the predominant class in the feed sample. The second most abundant species were the Oy-containing compounds. All of the O1 compounds that were detected in the feed oil were degraded during the hydrotreatment process, as were the O2 compounds with double-bond equivalent (DBE) values >4. Acidic NxOy-, NxSz-, OySz-, and NxOySz-containing compounds were not completely removed by the processing, but the relative abundances of these species were no longer significant in the product oil.
581 _a6
773 0 _tEnergy & fuels
_g23
942 _cARTICULO
100 1 _aKekäläinen, Timo
_942413
100 1 _aPakarinen, Jaana M.H.
_942414
100 1 _aWickström, Kim
_942415
999 _c170852
_d170852