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Simulation and optimal design for the residual oil hydrodemetallation in a cocurrent moving-bed reactor

✍ Scribed by Chien-Lih Chiang; Zhong-Ren Fang


Publisher
Elsevier Science
Year
1994
Tongue
English
Weight
748 KB
Volume
49
Category
Article
ISSN
0009-2509

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✦ Synopsis


A restricted diffusion model was set up to investigate the simulation and optimal design of the residual oil hydrodemetallation in a cocurrent moving-bed reactor. The system parameters examined included the Thiele modulus, oil retention time, flow rate ratio and pore size. Three types of catalyst with diRerent activity profiles were investigated, i.e. uniform, linear and two-step. Several figures were presented to predict the outlet metal concentrations and deposit conditions of metal sulfide in the outlet catalysts. Based on minimizing the outlet metal concentration, the optima1 catalyst pore sizes and their corresponding optimal reactor lengths were determined. The results show that the optimal pore size increases with increasing values of the Thiele modulus. The usage of nonuniform activity catalysts and multistage reactor can improve the reactor performance. With the values of oil retention time and flow rate ratio properly chosen, it is found that the one-stage reactor with catalysts under the optimal conditions can significantly improve the reactor performance.


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