A signi"cant number of gas}liquid}solid catalyzed reactions in the petroleum processing and chemical industries are carried out in trickle-bed reactors under conditions where substantial volatilization of the liquid phase can occur. A review of the limited literature on experiments and models for trickle-bed reactor systems with volatile liquids is presented "rst. A rigorous model for the solution of the reactor and pellet scale #ow-reaction-transport phenomena based on multicomponent di!usion theory is proposed. To overcome the assumptions in earlier models, the Stefan}Maxwell formulation is used to model interphase and intra-catalyst transport. The model predictions are compared with the experimental data of Hanika et al. (1975, Chem. Engng Commun., 2, 19}25; 1976, Chem. Engng J., 12, 193}197) on cyclohexene hydrogenation and also with the predictions of a simpli"ed model (Kheshgi et al., 1992, Chem. Engng Sci., 47, 1771}1777). Rigorous reactor and pellet-scale simulations carried out for both the liquid-phase and gas-phase reaction, as well as for intra-reactor wet}dry transition (hysteresis and rate multiplicity), are presented and discussed. Comparisons between various models and pitfalls associated with introducing simplifying assumptions to predict complex behavior of highly non-ideal three phase systems are also presented. ( 1999 Elsevier Science Ltd. All rights reserved.
[1]
M. Harold.
Steady-state behavior of the nonisothermal partially wetted and filled catalyst
,
1988
.
[2]
Interfacial mass transfer in trickle-bed reactor modelling
,
1996
.
[3]
C. C. Pantelides,et al.
A modelling and simulation language for combined lumped and distributed parameter systems
,
1996
.
[4]
Michael P. Harold,et al.
Bimolecular exothermic reaction with vaporization in the half-wetted slab catalyst
,
1993
.
[5]
Charles N. Satterfield,et al.
SOME EFFECTS OF VAPOR-LIQUID EQUILIBRIA ON PERFORMANCE OF A TRICKLE-BED REACTOR
,
1988
.
[6]
H. Kheshgi,et al.
Phase transition and steady-state multiplicity in a trickle-bed reactor
,
1992
.
[7]
G. R. Kocis,et al.
Effects of liquid evaporation on the performance of trickle-bed reactors
,
1986
.
[8]
M. Duduković,et al.
Analysis of catalyst effectiveness in trickle-bed reactors processing volatile or nonvolatile reactants
,
1980
.
[9]
A. Akgerman,et al.
EFFECT OF VOLATILE LIQUID PHASE ON TRICKLE BED REACTOR PERFORMANCE
,
1985
.
[10]
J. Hanika,et al.
Measurement of axial temperature profiles in an adiabatic trickle bed reactor
,
1976
.
[11]
Ross Taylor,et al.
Multicomponent mass transfer
,
1993
.