By Jackie Y Ying
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B. , Hoppener, R. , and Scholten, J. J. , Preparation and characterization of copper/zinc oxide/alumina catalysts for methanol synthesis, in “Preparation of Catalysts IV” (G. Poncelet, J. Martens, B. Delmon, P. A. Jacobs, and P. ), pp. 31, 767. Elsevier, Amsterdam (1987). S. Patent 2,155,119, Assigned to American Lurgi Corporation (April 18, 1939). , Process and Apparatus for the Thermal Decomposition of Substances or Mixtures of Same, West German Patent 753,306, Assigned to American Lurgi (1951).
To aid in understanding the relationship between the fluid-flow properties of the cavitational synthesis and the degree of strain induced in the titania synthesis, a Buckingham (1914) pi treatment was applied to the titania synthesis data obtained from the single-orifice processor. 92, as shown in Fig. 11. FIG. 11. Three-dimensional surface plot showing the correlation of applied pressure, crystallographic strain, and Reynolds number–throat cavitation number for the synthesis of titania using the CaviMax processor.
MOSER ET AL. that the effective average bulk temperature resulting from the shock wave heating was approximately 473 K. 85-mm orifice resulted in an effective heating to 438 K. Using the approximate phase composition data obtained from the 425, 437, 448, and 473 K oven-calcined samples in the middle section of Fig. 6 and assuming a first-order solid-state decomposition of ammonium molybdate, an activation energy of around 92 kJ/mol was computed. 16 passes of the 600-ml solution flowing at a rate of 125 ml/min through the cavitation chamber.
Nanostructured materials by Jackie Y Ying