By George J. Antos, Abdullah M. Aitani
Explains the chemistry governing naphtha reforming, catalyst coaching and characterization, catalyst deactivation and regeneration, and the most recent advances in expertise and functions. contains new discussions of matters linked to non-stop catalyst regeneration, next-generation reforming catalysts, environmental rules affecting the sector, and strategies of benzene relief.
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Extra resources for Catalytic Naphtha Reforming
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130A; Elsevier: Amsterdam, 2000; 83– 103. ; Weber, B. Hydrocarbon Proc. 1998, 77. html (Petroleum Association of Japan, Annual Review 1999). American Institute Research Project 45, 16th annual report, 1954. Weast, Ed. ; CRC Press: Boca Raton, 1978. ; Holmen, A. ; in press. ; Holmen, A. ; ACS Symposium Series No. 634, 1995; 268– 282. A. J. Gas Chromatogr. 1967, 5, 68. , in preparation. H. Anal. Chem. 1989, 61, 1268. R. Ed. Chromotography in the reﬁning industry. J. Chromatogr. , Vol. 56; Amsterdam, 1995.
The rate of hydrocarbon transport through the column is dependent on the carrier gas velocity, adjusted for the injector pressure and the oven temperature. The lightest hydrocarbons (methane and ethane) are transported very quickly through the column and separation requires low temperature (ambient). On the Copyright © 2004 by Taylor & Francis Figure 15 Schematic illustration of gas chromatography (GC) with gas/liquid sampling, split injection, and ﬂame ionization detection (FID). other hand, the heaviest aromatics need a temperature of 2008C or more in order not to adsorb strongly at the column front.