Shorter Corn] munications more than one rate controlling step exists should be particularly useful. This concept, originated by Horiuti [4,5], has been extended to include rate controlling paths by Happel[6]. A recent study [7] employed 14C as a tracer to demonstrate the applicability of a reaction
Substrate-inhibited enzyme reaction in a tubular reactor with axial dispersion
โ Scribed by Antonio L. DeVera; Arvind Varma
- Publisher
- Elsevier Science
- Year
- 1979
- Tongue
- English
- Weight
- 354 KB
- Volume
- 34
- Category
- Article
- ISSN
- 0009-2509
No coin nor oath required. For personal study only.
โฆ Synopsis
Abstrac
-For a fixed set of physlco-chemlcal parameters, an Isothermal substrate-mhlblted enzyme reactton in a tubular reactor with axed dlsperslon can pve nse to multrple steady states Cntena previously developed for non-isothermal reactions are apphed to this case to develop analytic condltlons which ensure umqueness of steady states The cntena compare well with values obtained from exact numerical calculations lNTRODUCTION It IS well
๐ SIMILAR VOLUMES
Using boundary conditions more general than those due to Danckwerts, the authors recently showed that significant variations may be encountered in the global stability characteristics of an axially dispersed adiabatic tubular reactor. The numerical results presented in this communication demonstrate
This paper deals with the dynamic behaviour of a tubular chemical reactor when axial diffusion is taken into account under such circumstances that oscillating solutions give rise to deterministic chaos. Two main problems demand special attention and have been carefully considered in this paper. The