Axial distribution of reactivity inside a fluid‐bed contactor

AICHE Journal - Tập 22 Số 2 - Trang 354-361 - 1976
Shintaro Furusaki1, Tatsuji Kikuchi1, Terukatsu Miyauchi1
1Department of Chemical Engineering, University of Tokyo, Tokyo, Japan 113.

Tóm tắt

Abstract

The axial destribution of reactivity inside a fluid‐bed contactor is studied for the hydrogenation of ethylene. The reactivity is large near the surface of the dense phase. The significant effect of the dilute phase, or the free board region, is verified experimentally, and the contact efficiency in the transition zone and in the dilute phase is obtained. The contact efficiency was approximated by ηc = 1 − 0.75 (ϵeede)0.4. The temperature rise in the dilute phase is measured in the small reactor. The transition zone between the dense and dilute phases is almost isothermal, but it is found that temperature increases in the dilute phase.

Từ khóa


Tài liệu tham khảo

10.1016/0009-2509(67)80040-X

10.1021/i160054a002

Chavarie C. “Performance Analysis of a Fluidized Bed Reactor. III Modification and Extension of Conventional Two‐Phase Models ”Ind. Eng. Chem. Fundamentals 86(1975).

Clift R., 1972, Coalescence of Bubble Chains in Fluidized Beds, Trans. Inst. Chem. Engrs., 50, 364

Davidson J. F., 1960, Bubble Formation at Orifice in an Inviscid Liquid, Trans. Inst. Chem. Engrs., 38, 335

Furusaki S. T. Kikuchi andT.Miyauchi “Behavior of a Fluid Bed in the Hydrogenation of Ethylene ” paper presented at Fukuoka Meeting Soc. Chem. Engrs. Japan (Oct. 1974).

10.1252/kakoronbunshu1953.27.667

10.1016/0009-2509(69)85055-4

10.1252/kakoronbunshu1953.33.274

Kunii D., 1969, Fluidization Engineering

10.1021/ie50474a004

Lewis W. K., 1962, Heat Transfer and Solid Mixing in Beds of Fluidized Solids, Chem. Eng. Progr. Symposium Ser. No. 38, 58, 67

10.1002/aic.690050405

10.1002/aic.690020418

10.1252/jcej.7.201

10.1252/jcej.7.207

10.1002/aic.690200605

10.1252/kakoronbunshu1953.33.880

10.1252/kakoronbunshu1953.33.369

1969, Intern. Chem. Eng., 9, 713

Miyauchi T., 1972, The Mechanism of Nucleate Boiling Heat Transfer, Heat Transfer Japanese Research, 1, 109

10.1252/jcej.5.251

10.1252/kakoronbunshu1953.35.680

1972, Intern. Chem. Eng., 12, 168

Orcutt J. C., 1962, Reaction Time Distributions in Fluidized Catalytic Reactors, Chem. Eng. Progr. Symposium Ser. No. 38, 58, 1

Partridge B. A., 1966, Chemical Reaction in a Bubbling Gas‐Fluidized Bed, Trans. Inst. Chem. Engrs., 44, T335

Rowe P. N. “Fluidized Bed Reactors ” Proc. of the Fifth European/Second International Symp. on Chem. Reaction Eng. Amsterdam. A9 (1972).

10.1002/aic.690010313

10.1252/kakoronbunshu1953.32.343

Squires A. M., 1962, Species of Fluidization, Chem. Eng. Progr. Symposium Ser. No. 38, 58, 57

10.1021/ie50415a005

10.1021/ie50417a018

10.1252/kakoronbunshu1953.33.668

10.1252/jcej.5.273

Towell G. D. C. P. Strand andG. H.Ackermann “Mixing and Mass Transfer in Large Diameter Bubble Columns ” paper presented at Am. Inst. Chem. Engrs. and Inst. Chem. Engrs. Joint Meeting London England (1965).

van Swaay W. P. M. andF. J. Zuiderweg “Investigation of Ozone Decomposition in Fluidized Beds on the Basis of a Two‐Phase Model ” paper presented at Symp. on Chem. Reaction Eng. Amsterdam (1972).

10.1016/0009-2509(64)85067-3