EP0241947A2

A method for controlling the temperature of a fluidized bed especially a process for producing polymers.

Abstract

A process is described for a method for controlling the temperature of a fluidized bed during the production of polymers in a fluidized bed reactor by an exothermic polymerization reaction, which comprises continuously introducing into the bed a stream of gas cooled to below the maximum desired temperature within said bed and simultaneously or separately introducing a stream of liquid into said reactor under conditions such that an essentially uniform two-phase mixture of said gas and liquid is introduced in said bed at a level below the region of maximum desired temperature within said reactor. This invention also refers to a process for producing polymers from one or more monomers by an exothermic polymerization reaction in a fluidized bed reactor in which the way of operation mentioned above is performed.

EP0241947A2, drawing sheet 1
Sheet 1 of 6

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Term ended

Projected expiry passed 23 March 2003, 23.5 years ago.

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16 claims: 2 independent, 14 dependent

  1. 1
    A method for controlling the temperature of a fluidized bed during the production of polymers in a fluidized bed reactor by an exothermic polymerization reaction, which comprises continuously introducing into the bed a stream of gas cooled to below the maximum desired temperature within said bed and simultaneously or separately introducing a stream of liquid into said reactor under conditions such that an essentially uniform two-phase mixture of said gas and liquid is introduced in said bed at a level below the region of maximum desired temperature within said reactor.
  2. 3
    A process for producing polymers from one or more monomers by an exothermic polymerization reaction in a fluidized bed reactor having an upper polymerization zone containing a bed of growing polymer particles and a lower gas diffusion zone, which comprises:1) continuously introducing a two-phase gas-liquid stream containing one or more monomers into said polymerization zone with an upward velocity sufficient to maintain said particles in a suspended and gas fluidized condition;2) continuously introducing a polymerization catalyst into said polymerization zone;3) continuously withdrawing polymer product from said polymerization zone;and4) continuously withdrawing unreacted gases from the said polymerization zone, compressing and cooling said gases to a temperature below the dew point of said gases.