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Dynamics of continuous adsorption and desorption in a fluidized bed with a nonlinear isotherm

  • O. M. Todes
  • Yu. S. Lezin
Petroleum and Gas Processing
  • 28 Downloads

Summary

  1. 1.

    It has been shown that in the case of single-stage and multi-stage adsorbers the concentrations of an impurity in the gaseous or solid phase during continuous adsorption and desorption can be calculated from the equations for the material and thermal balance.

     
  2. 2.

    The method of fastest discharge has been used for solving the problem of continuous adsorption and desorption in a fluidized bed with a nonlinear adsorption isotherm.

     
  3. 3.

    The results of theoretical calculations are compared with those for an experiment on adsorption of methane in a single-stage and a multi-stage adsorber.

     
  4. 4.

    A program has been compiled for solving the problem with a BÉSM-2 computer.

     

Keywords

Methane Adsorption Isotherm Theoretical Calculation Thermal Balance Fast Discharge 
These keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves.

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Literature cited

  1. 1.
    Yu. S. Lezin and O. M. Todes, Summaries of Reports to the Scientific and Technical Conference on the Use of Fluidized Beds in the Chemical Industry, Izd. “Khimiya” (1965).Google Scholar
  2. 2.
    O. M. Todes and Yu. S. Lezin, Summaries of Reports to the 20th International Conference on Theoretical and Applied Chemistry, Section F, Moscow (1965).Google Scholar
  3. 3.
    A. Krylov, Problems of Computing Mathematics and Computing Technique, proceedings of the All-Union Conference on Computer Technique, Mashgiz, 82 (1963).Google Scholar
  4. 4.
    V. L. Zagustkin, Numerical Methods of Solving Algebraic and Transcendental Equations, Fizmatgiz (1960).Google Scholar
  5. 5.
    L. A. Vlasenkov and A. N. Planovskii, Proc. VNII NP, No. 8, Gostoptekhizdat, p. 96.Google Scholar

Copyright information

© Consultants Bureau 1967

Authors and Affiliations

  • O. M. Todes
  • Yu. S. Lezin

There are no affiliations available

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