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Fluid Catalytic Cracking VII:
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  • Fluid Catalytic Cracking VII:
ID: 172342
Mario Occelli
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Since 1987, the Petroleum Division of the American Chemical Society (ACS) has been sponsored at 3 year intervals on international symposium on fluid cracking catalysts (FCC) technology. The ACS meeting in San Francisco, September 10-14, 2006.
Sixty-six years after the introduction of the first generation of gas molecules. 237 millions cars on US roads. Catalysts testing and evaluation still remains of interest, debate and controversy. Lambda sweep testing, testing of SOx, and metal contaminated oils cracking.
Ofrecido por www.electromanuales.com Powered by Joomla! The importance of solid nuclear magnetic resonance (NMR) in the study of crude oils, catalysts and reactions. (FCC aging and deactivation)
and personal overviews of SOx and fire promoters technology are presented.

* Presents findings from the tri-annual international symposium on fluid cracking catalysts (FCC) technology, sponsored by the Petroleum Division of the American Chemical Society (ACS)
* FCC aging and deactivation
* Personal overviews by the authors of SOx and fire promoters technology

1. Development of High-Severity FCC Process: An Overview (Yuchiro Fujiyama).
2. Discrepancies in FCC Catalyst Evaluation of Atmospheric Residues (Sven-Ingvar Andersson).
3. Novel Coke Shift Matrix Technique is Enhance the Activity of the Secondary Reaction Zone in MIP-CGP Process (Jun Long et al .).
4. Exploring FCC flexibility to produce mid-distillate and petrochemicals (W. Richard Gilbert et al .).
5. Improving LCO yield and quality in FCC units: Cracking pathways analysis (A. Corma, L. Sauvanaud).
6. FCC Catalyst for the Process of Increasing Gasoline and Propylene Production Cleaner (Jun Long et al .).
7. Towards a new generation of NOx additives (DM Stockwell.
8. Pt-based CO Combustion Promoters: Past and Present (AW Chester).
9. FCC regenerator simulation by Lambda Sweep testing (DM Stockwell).
10. Laboratory simulation of FCC equilibrium catalyst using a deactivation mathematical model
(LO Almanza).

11. Intra-particle mass transfer and contact time effects in FCC (DM Stockwell).
12. Equilibrium FCC catalyst performance simulation based on mixtures of hydrothermal dactorm samples (L. Antonio et al .).
13. NMR studies of FCC feeds, catalysts and Coke
(B. Behera et al .).
14. Impact of iron contaminated species on FCC catalyst (Yuxia Zhu et al .).
15. Catalytic cracking to liquid (BTL) fuels with novel cracking catalysts (AA Lappas, IA Vasalos).
16. Catalytic Cracking: The future of an evolving process (P. O'Connor).
17. Fundamental of SOx reduction technology in fluid catalytic cracking units (FCCU) (L. Magnabosco).
18. Evaluation of commercial SOx agents
(L. Magnabosco).
172342

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