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Fixed beds mean fluid velocity

Here, it has to be noted that for calculating the Peclet number in fixed beds, the actual velocity has to be used, i.e. the interstitial velocity, which influences the degree of mixing. In slurry bubble column reactors, the real velocity of the fluid is the bubble velocity, which is much higher than the gas superficial velocity. The mean bubble rise velocity for a batch liquid is (eq (3.201))... [Pg.392]

Few fixed-bed reactors operate in a region where the intrinsic kinetics are applicable. The particles are usually large to minimize pressure drop, and this means that diffusion within the pores. Steps 3 and 7, can limit the reaction rate. Also, the superficial fluid velocity may be low enough that the external film resistances of Steps 2 and 8 become important. A method is needed to estimate actual reaction rates given the intrinsic kinetics and operating conditions within the reactor. The usual approach is to define the effectiveness factor as... [Pg.362]

The next step is to check if the fluid velocity is acceptable for the mlnimum/maximum pressure drop, as well as for good mass and heat transfer. For fixed bed reactors a practical particle diameter is between 3 and 5 mm. The pressure drop across a bed of particles can be calculated by means of the general equation ... [Pg.608]


See other pages where Fixed beds mean fluid velocity is mentioned: [Pg.140]    [Pg.1549]    [Pg.61]    [Pg.392]    [Pg.1371]    [Pg.1856]    [Pg.1848]    [Pg.392]    [Pg.1553]    [Pg.536]    [Pg.719]    [Pg.564]   
See also in sourсe #XX -- [ Pg.140 ]




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