Optimization of the catalytic oxidation of CO for closed-cycle CO laser applications

Publisher: National Aeronautics and Space Administration, Langley Research Center, Publisher: For sale by the National Technical Information Service in Hampton, Va, [Springfield, Va

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  • Catalysts.,
  • Oxidation.

Edition Notes

StatementI.M. Miller ... [et al.].
SeriesNASA technical memorandum -- 86421.
ContributionsMiller, Isaiah M., 1851-1941., Langley Research Center.
The Physical Object
Pagination1 v.
ID Numbers
Open LibraryOL15395960M

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Get this from a library. Optimization of the catalytic oxidation of CO for closed-cycle CO laser applications. [I M Miller; Langley Research Center.;].

Selective oxidation of i-butane and i-butene to methacrolein and methacrylic acid over Keggin-type polyoxometalate and MoVTeNbOx catalysts: A comparative catalytic and in situ-spectroscopic study DGMK-TagungsberichtISBN X, p. The co-methanation of carbon dioxide containing syngas was carried out on Al2O3 supported Nix Fe1−x (x is,and ) catalysts for synthetic natural gas (SNG) production.

The laser-evaporated species were co-deposited with chloromethane in excess argon onto a CsI window cooled normally to 6 K by a closed-cycle helium refrigerator (ARS, N). The matrix samples were deposited at a rate of approximately 5 mmol/h for 1–2 h.

Isotopic-labeled 13 CH 3 Cl and CD 3 Cl (ISOTEC, 99%) were used without further : Yanying Zhao, Xin Liu, Shuang Meng. The CO 2 methanation was studied over 7 wt.% nickel supported on Ce Zr O 2 /AC to evaluate the correlation of the structural properties with catalytic performance.

The results of a thermogravimetric study of the interaction of a potassium carbonate/carbon sample with various gases, viz., CO 2, CO, H 2, and H 2 O, indicated the presence of three types of catalyst intermediates that are significant in the kinetic modeling.

Although gasification takes place at high temperatures, the catalyst remains on the. Based on this approach the reactivity of plasma treated and plasma stimulated TiO 2 catalytic surfaces have been studied by analyzing the oxidation of (i) C 2 H 2 to CO and CO 2 and (ii) CO to CO 2.

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Search book title Enter keywords for book title search. Search book content Enter keywords for book content search. Clear all filters Advanced Search Basic Search. THz-driven chemistry—a quasi-half-cycle, broadband superradiant THz pulse with peak fields of ~1 V nm −1 (10 MV = cm) and a peak frequency of 10 THz induces CO oxidation on the coadsorbed phase of CO and O on Ru(0 0 0 1) in ultrahigh vacuum (UHV) at a temperature of K (reused by permission of H Ogasawara/SLAC and APS/Joan Tycko)).Cited by:.

"Graphene Based Materials for Non-Linear Optical Applications and Ultrafast Laser Applications at 2 Microns" "Non-Catalytic Growth of Nanographene Films on .3 Vehicle Subsystems.

This chapter discusses the vehicle systems technology areas that the Partnership is addressing in its research and development (R&D) programs, which include the following: (1) advanced combustion, emission control, and fuels for internal combustion engines (ICEs); (2) fuel cells; (3) hydrogen storage onboard a vehicle; (4) electrochemical energy .Fe, Co, Ni and Cu are the main non-noble industrially significant catalysts in the CO2 and CO gas phase hydrogenation reaction towards hydrocarbons and alcohols.

These catalysts are typically supported on metal oxides such as SiO2, TiO2, Al2O3 and ZnO, in order to maximize the activity towards the desired reaction.