Characterization and Properties of Petroleum Fractions (ASTM by M.R. Riazi

By M.R. Riazi

Either petroleum execs and people with no technical engineering history will locate this designated new guide to be a necessary and finished reference for the petroleum in either processing and construction. WHAT MAKES THIS guide SO exact? • provides over six hundred predictive tools from theoretical to empirical, together with the main usual and such a lot exact ones for quite a lot of stipulations • Covers over a hundred thermodynamic and actual homes, that are appropriate to a variety of natural compounds, combos, petroleum fractions, petroleum items, heavy residues, waxes, asphaltenes, crude oils, traditional gases, reservoir fluids, and coal beverages. • Discusses gentle and heavy, liquid and vapor, and coffee and excessive strain structures • presents particular suggestions for every indexed estate and its purposes • contains solved sensible difficulties and offers workout issues of a great number of genuine facts for oils from around the globe. This new handbook is a special and complete source for execs within the petroleum undefined, learn, and govt, in addition to environmental businesses and academia.

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Extra resources for Characterization and Properties of Petroleum Fractions (ASTM manual series)

Sample text

40) have published data on the effects of catalyst deactivation on surface area, pore volume and mean pore diameter (see Table 2). From these data it is evident that surface areas and pore volumes decrease more than 50% and mean pore diameters decrease about 1520% over a run cycle. Only 1060% of the lost surface area and pore volume are restored during regeneration; less is recovered in the upper part of (or entrance to) the catalyst bed probably as a result of metals poisoning. Data based on N2 adsorption measurements from Beuther and coworkers (28) in Figure 10 provide a breakdown of surface area with pore radius for a resid hydrotreating catalyst, while Fig.

Sie, S. ; "Catalyst Deactivation By Poisoning and Pore Plugging in Petroleum Processing," in Catalyst Deactivation, eds. B. Delmon, and G. F. , Amsterdam, 1980. 19. Langhout, W. C. V. ; Prank, K. M. ; "Development and Experience with Shell Residue Hydroprocess," Prep. , June, 1980. 20. El-Kady, F. Y. ; J. Catal, 69, 147157, 1981. 21. Tamm, P. ; Harnsberger, H. ; Bridge, A. ; Ind. Eng. , Process Des. , 20(2), 262273, 1981. 22. ; Chem. Eng. , 77, 33, 1981. 23. ; "Effect of Catalyst Pore Structure on Hydrotreating of Heavy Oil," Abst.

Speight 13. Pneumatic and Hydraulic Conveying of Solids, O. A. Williams 14. Catalyst Manufacture: Laboratory and Commercial Preparations, Alvin B. Stiles 15. Characterization of Heterogeneous Catalysts, edited by Francis Delannay 16. BASIC Programs for Chemical Engineering Design, James Weber 17. Catalyst Poisoning, L. Louis Hegedus and Robert W. McCabe 18. Catalysis of Organic Reactions, edited by John R. Kosak 19. Adsorption Technology: A Step-by-Step Approach to Process Evaluation and Application, edited by Frank L.

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