EP1907124B2

Apparatus for separation of particles from a flow of gas

Abstract

This record has no abstract on file.

EP1907124B2, drawing sheet 1
Sheet 1 of 5

Term

Term ended

Expired 27 June 2026, 0.2 years ago.

  1. Priority and filed
  2. Granted
  3. Expired
  4. Today

6 claims: 2 independent, 4 dependent

  1. 1
    An apparatus for concurrent separation of particles from a flow of gas, comprising:a unit (44) for charging the particles in the flow of gas in an ionization phase;a sedimentation unit comprising a centrifugal separator rotor (14) with electrically conductive conical surface elements (16) upon which the ionized particles in the flow of gas can be deposited during their passage through gas flow gaps (48) between the surface elements, said rotor being rotatably mounted in a surrounding casing (12), said electrically conductive surface elements delimiting a central inlet shaft (20) in the rotor that is connected to an inlet (18) for unclean gas and that is in communication with the flow gaps (48) between said surface elements and with a space in the casing (12) surrounding the rotor (14);an electronic unit (38) for generating an electrical field between opposing faces of the adjacent surface elements;an outlet (24) for separated particles;and an outlet (22) for gas that has been cleaned from particles, characterized in that the electrically conductive conical surface elements (16) have an electrically conductive surface layer (36) facing inwardly towards the center axis of the rotor, an electrically conductive surface layer (32), which is facing away from the axis of the rotor and an intermediate electrically insulating layer (34), said electrically conductive surface layer (32) facing away from the axis of the rotor being electrically insulated from the inwardly facing surface layer (36) of the surface elements (16) such that, during the passage of the flow of gas through the gaps (48), the particles ionized in the charging unit (44) are trapped on the inwardly facing surface layer (36) by the simultaneous combined effect of a centrifugal force created by the rotation of the rotor and an electrostatic attraction force, whereupon the particles that were trapped on the inside of the surrounding casing (12) after the centrifugation can be led out from the casing via the particle outlet (24).
  2. 4
    An apparatus for counter-current separation of particles from a flow of gas, comprising:a unit for charging the particles in the flow of gas in an ionization phase;a sedimentation unit comprising a centrifugal separator rotor (14) with electrically conductive conical surface elements (16) upon which the ionized particles in the flow of gas can be deposited during their passage through gas flow gaps (48) between the surface elements, said rotor being rotatably mounted in a surrounding casing (12), said electrically conductive surface elements delimiting a central outlet shaft (20) in the rotor that is connected to an outlet (18) for cleaned gas and that is in communication with the flow gaps (48) between said surface elements and with a space in the casing (12) surrounding the rotor (14);an electronic unit (38) for generating an electrical field between opposing faces of the adjacent surface elements;an outlet (24) in the casing (12) for separated particles;and an inlet (22) in the casing (12) for unclean gas, characterized in that the electrically conductive conical surface elements (16) have an electrically conductive surface layer (36) facing inwardly towards the center axis of the rotor, an electrically conductive surface layer (32), which is facing away from the axis of the rotor and an intermediate electrically insulating layer (34), said electrically conductive surface layer (32) facing away from the axis of the rotor being electrically insulated from the inwardly facing surface layer (36) of the surface elements (16) such that, during the passage of the flow of gas through the gaps (48), the particles ionized in the charging unit are trapped on the inwardly facing surface layer (36) by the simultaneous combined effect of a centrifugal force created by the rotation of the rotor and an electrostatic attraction force, whereupon the particles that were trapped on the inside of the surrounding casing (12) after the centrifugation can be led out from the casing via the particle outlet (24).