Nova Patents
CA1333748C

High efficiency regenerator apparatus

Abstract

Disclosed is a high efficiency catalyst regeneratoremploying a barrier separating upper and lower regenerator sectionswhich minimizes structural damage caused by thermal stress inportions of the barrier subject to different degrees of heating. Inone embodiment a hot internal cone portion of the regeneratorforming the barrier is spaced from a cooler regenerator vesselsidewall. The space may be an unfilled void space or it may befilled with an insulation material. In another embodiment theregenerator vessel is physically separated into upper and lowersections with the barrier being formed by an upper sectioncontaining a concave dish head at its bottom and the lower sectioncontaining a convex dish head at its top which are connected by anextension of a riser interconnecting the concave and convex dishes.

CA1333748C, drawing sheet 1
Sheet 1 of 2

Term

Term ended

Expired 3 January 2012, 14.7 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

17 claims: 17 independent, 0 dependent

  1. 1
    Claims 1. A catalyst regenerator apparatus comprising:a regenerator vessel having a sidewall;a first combustor section within the regenerator vessel for regenerating spent catalyst, the combustor section comprising a catalyst receiving portion and means for introducing a combustor gas into catalyst introduced into the receving portion;a second disengaging section within the regenerator vessel for receiving a mixture comprising catalyst particles and the combusting gas from the first section, the second section including at least one separation device for separating regenerated catalyst particles from the mixture;and means within the regenerator vessel for physically separating the first combustor section from the second disengaging section, the separating means defining a conduit providing a flow passage for the mixture from the first to the second section, the conduit having, at one end, a riser extending into the second section, and at another end a sidewall, and;means for supporting the separating means such that the sidewall of the conduit is spaced from the sidewall of the regenerator vessel.
  2. 2
    A catalyst regenerator as in Claim 1, wherein the sidewall of the separating means includes a cylindrical skirt and the regenerator vessel has a cylindrical sidewall, the space being defined at least between the cylindrical skirt and the cylindrical sidewall.
  3. 3
    A catalyst regenerator as in Claim 1, further comprising an insulating material provided in the space.
  4. 4
    A catalyst regenerator as in Claim 1, wherein the space is an unfilled void space. F-4568 -91333748
  5. 5
    A catalyst regenerator as in Claim 2, wherein the support means comprises a bar ring attached to the inner periphery of the sidewall of the regenerator vessel and the cylindrical skirt is supported by the bar ring.
  6. 6
    A catalyst regenerator as in Claim 1, further comprising a refractory material covering at least a portion of an inner periphery of the conduit sidewall which is disposed closest to the second regenerator section.
  7. 7
    A catalyst regenerator as in Claim 6, further comprising a ceramic fiber material located between the inner periphery of the conduit and the refractory material.
  8. 8
    A catalyst regenerator as in Claim 7, wherein the refractory material also covers at least a portion of an outer periphery of the conduit sidewall.
  9. 9
    A catalyst regenerator as in Claim 8, further comprising a ceramic fiber material located between an outer periphery of the conduit and the rerractory material.
  10. 10
    A catalyst regenerator as in Claim 6 wherein the refractory material extends from the inner periphery of the conduit to cover an inner periphery of the regenerator vessel within the combustion section.
  11. 11
    A catalyst regenerator as in Claim 1, wherein the conduit includes a first larger diameter cylindrical portion, a second smaller diameter cylindrical portion, forming the riser, and a frusto conical shaped intermediate portion interconnecting the 5 larger and smaller diameter cylindrical portions.
  12. 12
    A catalyst regenerator comprising:a first combustor vessel for regenerating spent catalyst, the combustor vessel comprising a catalyst receiving portion and means for introducing a combustion gas into catalyst introduced into 5 the receiving portion;a second disengaging vessel for receiving a mixture of catalyst particles and the combustion gas from the first vessel, the F-4568 -10-1333748 second vessel including means for separating regenerated catalyst particles from the mixture;and means for conducting the mixture from the combustor vessel to the disengaging vessel.
  13. 13
    A catalyst regenerator as in Claim 12, wherein the conducting means includes a riser which receives the mixture and which extends into the disengaging vessel, the separating means being connected to an output of the riser.
  14. 14
    A catalyst regenerator as in Claim 13, wherein the disengaging vessel is located above the combustor vessel and in axial alignment therewith and in axial alignment with the riser which extends from an upper portion of the combustor vessel into the 5 disengaging vessel.
  15. 15
    A catalyst regenerator as in Claim 14, wherein the disengager vessel has a bottom formed as a concave dished head through which the riser extends.
  16. 16
    A catalyst regenerator as in Claim 15, wherein the combustor vessel has a top portion in the shape of a convex dished head, a lower portion of the riser being connected to an opening in the convex dished head so as to receive the mixture from the combustor vessel.
  17. 17
    21CYCLONE(S) yortwi / CATALYST REACTOR STANDPIPE AIR