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Fuel Processing Technology

Reneganathan, K., Zondlo, J. W., Mintz, E. A., Kneisl, P., and Stiller, A. H., Preparation of an ultra-low ash coal extract under mild conditions. Fuel Processing Technology, 1988, 18, 273 278. [Pg.234]

W. He and Kas Hemmes, Operating characteristics of a reformer for molten carbonate fuel-cell power-generation systems. Fuel Processing Technology, 67 (2000) 61. [Pg.632]

Qi, A., Peppley, B., Karan, K. (2007) Integrated Fuel Processors for Fuel CeU Application A Review. Fuel Processing Technology, 88, 3-22. [Pg.26]

Ravi, V., Mok, Y.S., Rajanikanth, B.S. et al. (2003) Temperature effect on hydrocarbon-enhanced nitric oxide conversion using a dielectric barrier discharge reactor, Fuel Processing Technology 81, 187-99. [Pg.392]

Villasenor, F. Loera, O. Campero, A., and Viniegra-Gonzalez, G., Oxidation of dibenzothiophene by laccase or hydrogen peroxide and deep desulfurization of diesel fuel by the later. Fuel Processing Technology, 2004. 86(1) pp. 49-59. [Pg.213]

Marzona, M. Pessione, E. Di Martino, S., and Giunta, C., Benzothiophene and dibenzoth-iophene as the sole sulfur source in Acinetobacter growth kinetics and oxidation products. Fuel Processing Technology, 1997. 52(1-3) pp. 199-205. [Pg.218]

Ovalles, C. Rojas, I. Acevedo, S., et al., Upgrading of Orinoco Belt Crude Oil and Its Fractions by an Electrochemical System in the Presence of Protonating Agents. Fuel Processing Technology, 1996. 48(2) pp. 159-172. [Pg.223]

IdaTech, Fuel Processing Technology and ElectrGen, available at http //www.idatech.com/... [Pg.319]

British Nuclear Fuels PLC, Nuclear Fuel Processing Technology, 1985. [Pg.47]

W. Teagan, J. Bentley, "Status ADL/EPYX Fuel Processing Technology," joint DOE/EPREGRI Workshop on Fuel Cell Technology, San Francisco, CA, May 18-20, 1998. M. Krumpelt, K. M. Myles, No. 8, An EPREGRI Fuel Cell Workshop on Technology Research and Development, April 13-14, 1993, Stonehart Associates, Madison, Connecticut, 1993. [Pg.92]

This fuel processing section addresses the above issues in more detail and provides a technical description of fuel processing technology. [Pg.200]

As stated earlier, fuel processing technology from large chemical installations has been successfully transferred to small compact fuel cell units to convert pipeline natural gas, the fuel of choice for small stationary power generators. The technology for converting natural gas is described later in this section. [Pg.202]

Fuel Processing Technology Descriptions Fuel Conversion Description... [Pg.208]

Fuel Processing Technology for Premium Power Fuel Cell Systems," J.C. Cross et al., Epyx/ADL, Pg. 749, Fuel Cell Seminar Abstracts, Courtesy Associates, Inc., November... [Pg.280]

Tajima, H. Yamasaki, A. Kiyono, F. (2005b). Process design of a new injection method of liquid C02 at the intermediate depths in the ocean using a static mixer. Fuel Processing Technology, 86 (14-15), 1667-1678. [Pg.56]

Ni M, Leung DYC, Leung MKH, Sumathy K (2006) An overview of hydrogen production from biomass. Fuel processing technology 87 461-472... [Pg.34]

Setti, L., Lanzarini, G. and Pifferi, P.G. (1997) Whole cell biocatalysis for an oil AQsa fanz2Aon rocQSS. Fuel Processing Technology, 52, 145-153. [Pg.262]


See other pages where Fuel Processing Technology is mentioned: [Pg.520]    [Pg.532]    [Pg.576]    [Pg.145]    [Pg.63]    [Pg.71]    [Pg.77]    [Pg.276]    [Pg.278]    [Pg.211]    [Pg.217]    [Pg.219]    [Pg.129]    [Pg.141]    [Pg.143]    [Pg.311]    [Pg.313]    [Pg.307]    [Pg.199]    [Pg.221]    [Pg.143]    [Pg.211]    [Pg.282]    [Pg.224]    [Pg.319]    [Pg.392]    [Pg.31]    [Pg.199]    [Pg.199]    [Pg.200]    [Pg.426]   


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