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Three-phase catalytic reactors reactor efficiency

In some applications such as catalytic hydrogenation of vegetable oils, slurry reactors, froth flotation, evaporative crystallisation, and so on, the success and efficiency of the process is directly influenced by the extent of mixing between the three phases. Despite its great industrial importance, this topic has received only limited attention. [Pg.275]

Three phase processes have definite advantages over gas-solid operations for temperature control and heat removal. That is the reason why the use of a chemically inert liquid in catalytic reactors can improve the thermodynamic efficiency of the reaction system. [Pg.739]

Yawalkar et al. (2001) has developed a model for a three-phase reactor based on the use of a dense polymeric composite membrane containing discrete cubic zeolite particles (Fig. 4.5) for the epoxidation reaction of alkene. Catalytic particles of the same size are assumed vdth a cubic shape and uniformly dispersed across the polymer membrane cross-section. Effects of various parameters, such as peroxide and alkene concentration in liquid phase, sorption coefficient of the membrane for peroxide and alkene, membrane-catalyst distribution coefficient for peroxide and alkene and catalyst loading, have been studied. The results have been discussed in terms of a peroxide effidency defined as the ratio of flux of peroxide through the membrane utilized for alkene oxidation to the total flux of organic peroxide through the membrane. The paper aimed to show that, by using an organophilic dense membrane and the catalysts confined in the polymeric matrix, the oxidant concentration (in that reaction peroxides) can be controlled on the active site with an improvement of the peroxide efficiency and selectivity to desired products. [Pg.169]


See other pages where Three-phase catalytic reactors reactor efficiency is mentioned: [Pg.484]    [Pg.483]    [Pg.97]    [Pg.231]    [Pg.1781]    [Pg.26]    [Pg.1099]    [Pg.51]    [Pg.180]    [Pg.1321]    [Pg.132]    [Pg.1144]    [Pg.395]    [Pg.186]    [Pg.367]    [Pg.869]    [Pg.527]    [Pg.405]   
See also in sourсe #XX -- [ Pg.532 ]




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