The fluld effective dlffuslon coefficients under first-order-reactton condltlon were calculated at zero flow rates and shown m chart as a function of flmd and mtrapartlcle dlffuslvltles and Thlele modulus Theoretical backeround was elven to the assumntton of concentnc mtraparticle concentration empl
Optimal production of intermediate for zero—first and first—first order reaction sequences in fluidised bed reactors
✍ Scribed by R.K. Irani; V.K. Jayaraman; B.D. Kulkarni; L.K. Doraiswamy
- Publisher
- Elsevier Science
- Year
- 1981
- Tongue
- English
- Weight
- 562 KB
- Volume
- 36
- Category
- Article
- ISSN
- 0009-2509
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✦ Synopsis
Abstmet-An analysis of zero-first and first-first order reaction schemes has been carried out in a Ruidised bed with a view to optimising the production of intermediate R for a given bubble diameter. For the zero-first order reaction sequence, the gas residence time at which the maximum concentration of R occurs is shown to be fixed and independent of bubble size in the bed. On the other hand, for a first-first order reaction scheme, an optimum gas residence time exists for the concentration maximum to occur at the bed exit. This interaction between bubble diameter, gas residence time and maximum concentration of intermediate is resolved by recourse to a three dimensional diagram which ontimises the uroduction of intermediate for any given value of bubble diameter or gas residence time.
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