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1. ¡¾ÊéÃû¡¿ Cataltsis vol.17
¡¾×÷Õß¡¿ Spivey, J.J.
¡¾³ö°æÕß¡¿ The Royal Society of Chemistry
¡¾³ö°æÈÕÆÚ¡¿ 2004
¡¾¾í¼­¡¿ vol.17
¡¾ISBN¡¿ 0854042296
¡¾¹Ý²ØºÅ¡¿ O643.3/12-17/W
¡¾µÇ¼ºÅ¡¿ 0091518
¡¾Êä³öÎļþ¡¿ Ô­ÎÄä¯ÀÀ


Chapter 4   Coke Characterization
1    Introduction
2    Temperature-Programmed Techniques
2.1    Temperature-Programmed Oxidation
2.2    TPO Studies of Different Catalytic Systems
2.3    Temperature-Programmed Hydrogenation
2.4    Temperature-Programmed Gasification
3    Electron Microscopy
3.1    Naphtha Reforming
3.2    Coke on Nickel Catalysts
3.3    1-Butene Isomerization
4     Electron Energy Loss Spectrocopy (EELS)
4.1    Naphtha Reforming
4.2    1-Butene Isomerization
4.3    Other Reactions on Zeolites
5     Infrared techniques (FTIR, DRIFTS)
5.1    Cracking
5.2    Isobutane Alkylation
5.3    1-Butene Skeletal Isomerization
5.4    Butene Dehydrogenation
5.5    Other Reactions on Zeolites
6    Laser Raman Spectroscopy
6.1    Classic Laser Raman Spectroscopy (LRS)
6.2    UV-Raman Spectrometry (UV-RS)
7    Dissolution of Support and Solvent Extraction
7.1    Naphtha Reforming
7.2    Coke on Zeolites
7.3    Paraffins Dehydrogenation
7.4    Propene Oligomerization on Heteropoly-Acids
7.5    n-Butane Isomerization
8    Neutron Scattering and Attenuation
9    Nuclear Magnetic Resonance (NMR)
9.1    13C CP/MAS-NMR
9.2    1H NMR
9.3    129Xe NMR
9.4    129Si MAS NMR
10    Auger Electron Spectroscopy (AES)
11    X-Ray Diffraction (XRD)
12    Secondary Ion Mass Spectrometry (SIMS)
13    Sorption Capacity: Surface Area and Pore Volume
13.1  Coke on Zeolites
13.2  Residue Hydrotreating
13.3  Isobutane Dehydrogenation
14    X-Ray Photo-electron Spectroscopy (XPS)
14.1  Coke on Zeolites
14.2  Residue Hydrotreating
14.3  Isobutane Dehydrogenation
15    Ultraviolet-Visible Spectroscopy (UV-VIS)
15.1  Isobutane Alkylation
15.2  n-Butane Isomerization
16    Electron Paramagnetic Resonance (EPR)
17    Coke Formation Rate
18    Concluding Remarks
References

2. Kinetic modeling of Hydrocarbon processing and the effect of catalystss deactivation by coke formation.

Catalysis review science and engineering
50:1-18 2008

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