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Pollution control catalysts

From the heat generation alone the maximum tolerable temperature difference between catalyst and gas can be evaluated, as will be shown in a later chapter. This is never done in pollution control catalyst testing. Due to the simple conditions at very low concentration, the Ignition Curve can be evaluated for first order kinetics. [Pg.104]

Hydrotreating Technology for Pollution Control Catalysts, Catalysis, and Processes, edited by Mario L. Occelli and Russell Chianelli Catalysis of Organic Reactions, edited by Russell E. Malz, Jr. [Pg.675]

Kuhe. T A. Ishlhara. and vv Qian Hsilimlesuitununioil iwtl HyrlrrHlenitroynuo non Chemistry tint Ptittineeriny. John Wiley Sons. Inc.. New York. NY. 200(1. Oceclli. M.L. and R. Chianclli Hyilniirvaiitnt Tethnoloyy tor Pollution Control Catalysts. Catalysis, attil Pnreessrs. Marvel Dekkcr. Inc.. New York. NY, 1 ZJfi... [Pg.808]

The most widely known pollution control catalysts are those for auto emission control. Automotive catalysts can be of two types—monoliths and pellets. Monoliths now dominate the market. Pollution control catalysts are also used to control diesel emissions. [Pg.95]

R.A. Meyers, Handbook of Petroleum Refining Processes. McGraw-Hill, New York, 1986. M.L. Occelli and R. Chianelli, Hydrotreating Technology for Pollution Control Catalysts, Catalysis, and Processes. Marcel Dekker, New York,1996 J.G. Speight, The Chemistry and Technology of Petroleum. M. Dekker, New York, 1999. [Pg.634]

OTHER COMMENTS used in the manufacture of bronzes, brass, and other copper alloys useful in the manufacture of electric wiring, electrical conductors, switches, and ammunition electroplated protective coatings and undercoats for nickel, chromium, zinc, etc. used in corrosion-resistant piping has also been used in cement, food, drugs, metallurgy, nylon, paper products, pigments, and dyes use as a pollution control catalyst. [Pg.517]

Hydrotreating Technology for Pollution Control Catalysts, Catalysis, and Processes, edited... [Pg.305]

The demand for the lanthanoid metals is expected to increase with the growing demands for pollution control catalysts in motor vehicles and rechargeable batteries. Along with lithium-ion batteries, nickel-metal hydride (NiMH) batteries find increasing applications in mobile phones, laptop computers and other portable electronic devices such as MP3 players. [Pg.860]


See other pages where Pollution control catalysts is mentioned: [Pg.601]    [Pg.75]   
See also in sourсe #XX -- [ Pg.108 ]




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