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Pittsburgh coal

A. Geertsema, Proceedings of the 6th Annual Pittsburgh Coal Conference, Sept. 25—29, 1989, University of Pittsburgh, pp. 582—587. [Pg.170]

M. Ikura andj. F. Kelly, "A Techno-Economic Evaluation of CANMET Coprocessing Technology," Proceedings Annual International Pittsburgh Coal Conference, 1990, pp. 719—728. [Pg.100]

Blind Canyon coal. Lewiston-Stockton coal. Pittsburgh coal. [Pg.224]

P. C. Richards and A. B. Krewiughaus, "Coal Flexibihty of the Shell Coal Gasificatiou Process," Sixth Nnnual Jntemational Pittsburgh Coal Conference, Sept. 1989. [Pg.278]

D. C. Baker, W. V. Bush, K. R. Loos, M. W. Potter, and P. F. Russell, "Environmental Characteri2ation of the Shell Coal Gasification Process. II. Aqueous Effluent," Sixth Annual Pittsburgh Coal Conference, Pittsburgh, Pa., Sept., 1989. [Pg.278]

Figure 23, Pressure drop for Pittsburgh coal for a discrete plug flow,... Figure 23, Pressure drop for Pittsburgh coal for a discrete plug flow,...
Source Adapted from Bos, H. and Van Dongen, F. Shell Coal Gasification Process, The 23rd International Pittsburgh Coal Conference, Sep. 25-28,2006. [Pg.112]

Schematic diagram of the continuous experiment high-pressure reactor. (Adapted from Shiying, L., Michiaki, H., Yoshizo, S., and Hiroyuki, H., Continuous Experiment Regarding Hydrogen Productionby Coal/ CaO Reaction with Steam (HyPr-RING), 21st Pittsburgh Coal Conference, Osaka, Japan, Sep. 13-17,2004.)... Schematic diagram of the continuous experiment high-pressure reactor. (Adapted from Shiying, L., Michiaki, H., Yoshizo, S., and Hiroyuki, H., Continuous Experiment Regarding Hydrogen Productionby Coal/ CaO Reaction with Steam (HyPr-RING), 21st Pittsburgh Coal Conference, Osaka, Japan, Sep. 13-17,2004.)...
Damle, A.S., Separation of Hydrogen and Carbon Dioxide in Advanced Fossil Energy Conversion Processes using a Membrane Reactor, 2002 Pittsburgh Coal Conference, Pittsburgh, PA, September 2002. [Pg.317]

Dorris, S.E., T.H. Lee, S. Wang, J.J. Picciolo, J.T. Dusek, and U. Balachandran, Dense Cermet Membranes for Hydrogen Separation, 19th Annual International Pittsburgh Coal Conference, Pittsburgh,... [Pg.318]

Li, W., S.K. Gangwal, R.P Gupta, and B.S. Turk, Development of Fluidizable Lithium Silicate-Based Sorbents for High Temperature Carbon Dioxide Removal, 2006 Pittsburgh Coal Conference, Pittsburgh, PA, September 2006. [Pg.320]

Andrus, H.A.E. Jr. et al., ALSTOM s Hybrid Combustion-Gasification Chemical Looping Technology Development, Proceedings of the 22nd Annual International Pittsburgh Coal Conference, Pittsburgh, PA, September 2005. [Pg.597]

Ban, H., Li, T. X., Schaefer, J. L. Stencel, J. M. 1996. Characterizing dry triboelectrostatic beneficiation of coal and fly ash using recovery analysis. In Chiang, S. H. (ed) Coal-Energy and the Environment. Thirteenth Annual International Pittsburgh Coal Conference, September 1996, Pittsburgh, PA, 2, 873-878. [Pg.260]

Sloss, L. L. Davidson, R. M. 2001. Pardoning of potentially hazardous trace elements in coal combustion. Proceedings of 18th Annual International Pittsburgh Coal Conference. CD Rom. [Pg.639]

The overall explosibility of several materials when compared to Pittsburgh coal, the currently accepted standard with an explosibility index of 1, is as follows ... [Pg.473]

The authors wish to thank Sabri Ergun and W. F. Donaldson of the Solid State Physics group at the Bureau of Mines Pittsburgh Coal Research Center for their special assistance in obtaining the x-ray scattering intensities of the samples. We also wish to thank Glenn L. Cook of the Laramie Petroleum Research Center for interpreting the infrared spectra. [Pg.36]

Preliminary measurements have been made on Phillip s n-hexane, known to be derived from natural gas, and comparisons have been made with the Fischer-Tropsch standard, n-hexane. Both products were purified by Dr. B. D. Blaustein of the Pittsburgh Coal Research Center by means of gas chromatography. It is known from the work of Stevenson that breakage of a carbon-12-carbon-12 bond is more probable than breakage of a carbon-12-carbon-13 bond. This means that if the n-hexane from natural gas were formed by a bond... [Pg.45]


See other pages where Pittsburgh coal is mentioned: [Pg.170]    [Pg.170]    [Pg.265]    [Pg.265]    [Pg.265]    [Pg.265]    [Pg.265]    [Pg.265]    [Pg.265]    [Pg.266]    [Pg.266]    [Pg.266]    [Pg.1724]    [Pg.219]    [Pg.402]    [Pg.504]    [Pg.689]    [Pg.125]    [Pg.125]    [Pg.599]    [Pg.329]    [Pg.59]    [Pg.38]   
See also in sourсe #XX -- [ Pg.357 ]




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