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Pellet design

Figure 8.57. Effect of catalyst potential on the rates of formation of C2H6, C2H4) HzCO, CH3OH and CH3CHO during CO hydrogenation on Pd/YSZ. The rate of CH4 formation is of the order 10 9 mol/s and is only weakly affected by UWr Single pellet design P=12.5 bar, T=350°C. pH2/pco= -8, flowrate 85 cm3 STP/min.5 59... Figure 8.57. Effect of catalyst potential on the rates of formation of C2H6, C2H4) HzCO, CH3OH and CH3CHO during CO hydrogenation on Pd/YSZ. The rate of CH4 formation is of the order 10 9 mol/s and is only weakly affected by UWr Single pellet design P=12.5 bar, T=350°C. pH2/pco= -8, flowrate 85 cm3 STP/min.5 59...
Benefits of Modern Catalyst Pellet Design on Reformer Performance... [Pg.367]

The Catalyst Pellet Design Equations, Calculating r] along the Length of the Reactor... [Pg.430]

Next we try to simplify the catalyst pellet design equations (7.9) to (7.11) which are used to calculate r/ for all points along the length of the reactor. [Pg.433]

This chapter is concerned with the improvement of catalyst performance through a better pellet design. This design relates to the physical properties of the catalyst pellets for given kinetics and does not involve the chemical composition of the catalyst. Examples are given to illustrate the influence of structural parameters on catalyst performance. [Pg.177]

Three distinct bands of material will separate on the Percoll gradients. At the top, a band comprised primanly of myelin will form. A second band, comprised of undefined cell fragments and empty sacs (the B-band), will form at the 7 5/10% Percoll boundary. The C-band, appearing at the 10/23% Percoll boundary, contains the synaptosomes. Mitochondria and large synaptosomes comprise the pellet (designated P see Figs. 1 and 2). [Pg.43]

Solsvik J, Jakobsen HA (2011) A numerical study of a two property catalyst/sorbent pellet design for the sorption-enhanced steam-methane reforming process modeling complexity and parameter sensitivity study. Chem Eng J 178 407-422... [Pg.364]

ManufactutBd by Continuous Metal Technology and sold exclusively through Ballistic Products, ITX is a tungsten-based cast pellet designed for density and softness similar to lead, only nontoxic. It is soft enough to cmsh with pliers. Like lead and bismuth, ITX registers below 27.0 on the Rockwell C scale of hardness. Each individual pellet is a spherically formed projectile with a midband that enhances lethal wound channels, says Ballistic Products. [Pg.84]

Moderated core case (15 year pellet design) pushes burnups to 7.5 %FIMA but the peaking factor is 2.4... [Pg.257]


See other pages where Pellet design is mentioned: [Pg.309]    [Pg.80]    [Pg.78]    [Pg.285]    [Pg.162]    [Pg.498]    [Pg.369]    [Pg.553]    [Pg.287]    [Pg.38]    [Pg.57]    [Pg.77]    [Pg.79]    [Pg.344]    [Pg.156]    [Pg.168]   
See also in sourсe #XX -- [ Pg.138 , Pg.194 ]




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