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Realization of fast chemical reactions in tubular regime

Realization of fast chemical reactions in tubular regime [Pg.12]

Fundamental regularities offast chemical reactions in turbulent flows [Pg.12]

The other extreme case (local torch regime) is realized at relatively high values of R (type B) (tank stirred reactor). Active sites deactivates having no time for diffusion into reaction volume peripheral parts that in this case are the slip zones of non-reacted monomer. As a consequence specific, complex in configuration fields of monomer, active sites concentrations and temperature are formed. Reaction doesn t reach reactor s walls and product yield due to monomer slipping is always lower than 100% [38,39]. [Pg.13]

Correlation between eeometn of reaction zone with kinetic and hydrodynamic parameters [Pg.13]

Critical radius Rcr determining transformation from torch regime of reactor operating (macroscopic regime B) into plug-flow regime in turbulent flows (type A) depends on the correlation between monomer diffusion (Dt) and active sites deactivation (kd) [1,28,42-44]  [Pg.13]




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