CA2373558C

Prilling head assembly for pelletizer vessel

Abstract

Disclosed is a pelletizer vessel and a prilling head assembly for use in the pelletizer vessel for prilling a hard resid material. The pellitizer vessel has an has an upright pelletizing vessel with an upper prilling zone, a sphere- forming zone below the prilling zone, a cooling zone below the sphere-forming zone, a bath below the cooling zone, and a head in the zone rotatable along a vertical axis and having a plurality of discharge orifices for throwing molten material radially outwardly. A vertical height of the sphere- forming zone is sufficient to allow material discharged from the head to form substantially spherical liquid pellets. Nozzles are provided for spraying water inwardly into the cooling zone to cool and at least partially solidify the liquid pellets to be collected in the bath. The head assembly has a a feed inlet to allow for the introduction of resid material, rotary union with a fluid tight seal, a rotatable pipe to convey a resid material to the head, a drive wheel to provide rotation to the rotatable pipe, a support housing having a mount for attachment to the pellitizer vessel, and a head with a flow passage in fluid communication with the rotatable pipe and radially offset orifices. Bearings are provided for stablizing and guiding the rotatable pipe. Inert gas is introduced into the annular spaces of the support housing to prohibit foreign matter.

CA2373558C, drawing sheet 1
Sheet 1 of 9

Term

Term ended

Expired 26 February 2022, 4.6 years ago.

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

5 claims: 3 independent, 2 dependent

  1. 1
    CA 02373558 2002-02-26 Claims:1. A pelletizer for making spherical pellets from a normally solid feed material that can be made molten at an elevated temperature, comprising: an upright pelletizing vessel having an upper prilling zone, a sphere-forming zone below the prilling zone, a cooling zone below the sphere-forming zone, and a lower cooling bath below the cooling zone;a centrally disposed prilling head in the prilling zone rotatable along a vertical axis and having a plurality of discharge orifices for throwing the feed material radially outwardly, wherein a throw-away diameter of the prilling head is less than an inside diameter of the pelletizing vessel;a prilling head assembly comprising a rotary union including a housing, a feed inlet, a rotatable pipe depending from the housing, a flow path between the feed inlet and an upper end of the pipe disposed within the housing and a fluid tight seal between an exterior surface of the pipe and an opening in the housing;a lower end of the rotatable pipe connected to a prilling head having a flow passage in fluid communication between an outlet from the lower end of the rotatable pipe and a plurality of orifices radially offset from an axis of the rotatable pipe;a support housing having a mount for attachment to the pelletizing vessel and upper and lower bearings adjacent respective upper and lower ends of the support housing for rotatably receiving the rotatable pipe;a drive wheel secured to the rotatable pipe;a line for supplying the molten feed material to the feed inlet of the prilling head assembly;KBR 00-0671/KEL 83 March 1,2001 CA 02373558 2002-02-26 a vertical height of the sphere-forming zone sufficient to allow material discharged from the prilling head to form substantially spherical liquid pellets;nozzles for spraying a liquid cooling medium inwardly into the cooling zone to cool and at least partially solidify the liquid pellets to be collected in the bath;a line for supplying cooling medium to the nozzles and the bath to maintain a depth of the bath in the pelletizing vessel;a line for withdrawing a slurry of the pellets in the cooling medium. 2. The pelletizer of claim 1 wherein the discharge orifices are arrayed at a circumference of the prilling head in a plurality of vertically spaced upper and lower rows wherein the lower row or rows are disposed at a smaller radius from the axis of rotation of the prilling head than the upper row or rows. 3. The pelletizer of claim 2 wherein the prilling head has a circumference tapered from an uppermost row to a lowermost row. 4. The pelletizer of claim 2 wherein the prilling head comprises a plurality of rings of different diameter with orifices formed in an outer circumference of each ring, wherein the rings are secured to the prilling head in a descending fashion wherein each successively lower ring has a smaller diameter than the preceding ring. 5. The pelletizer of claim 1 further comprising a drive operatively connected to the drive wheel for rotating the prilling head at from about 100 to about 5000 rpm wherein the prilling head has a diameter from about 2 inches to about 5 feet, and wherein the orifices have a diameter from about 1/32-inch to about 1-inch and a production capacity of from about 1 to about 1000 lbs/hr of the feed material per orifice. 6. The pelletizer of claim 1 further comprising a heater for heating an upper end of the vessel to maintain a substantially constant temperature zone adjacent the prilling head. KBR 00-0671/KEL 83 March 1,2001 CA 02373558 2002-02-26 7. The pelletizer of claim 1 further comprising a line for introducing steam into the sphere-forming zone. 8. The pelletizer of claim 1 further comprising a detachable coupling in the rotatable pipe between the rotary union and the upper bearing. 9. The pelletizer of claim 1 wherein the mount comprises a mounting flange and the support housing includes a fixed pipe with a larger inside diameter than the outside diameter of the rotatable pipe depending from the mounting flange. 10. The pelletizer of claim 9 further comprising a lower dust seal about a lower end of the fixed pipe between the lower bearing and the prilling head, and an upper dust seal about the rotatable pipe adjacent an opening in the mounting flange receiving the rotatable pipe. 11. The pelletizer of claim 1 wherein the support housing includes a top flange secured by a bracket in spaced relation above the mounting flange and the upper bearing is secured to the top flange. 12. The pelletizer of claim 1 wherein the drive wheel is disposed between the top flange and the mounting flange. 13. The pelletizer of claim 1 further comprising a port for introducing inert gas into an annulus between the fixed pipe and the rotatable pipe. 14. A prilling head assembly mountable on an upper end of a pelletizing vessel for throwing a petroleum resid feed material radially outwardly into an upper prilling zone in the vessel, comprising;a rotary union including a housing, a feed inlet, a rotatable pipe depending from the housing, a flow path between the feed inlet and an upper end of the pipe disposed within the housing and a fluid tight seal between an exterior surface of the pipe and an opening in the housing;a lower end of the rotatable pipe connected to a prilling head having a flow passage in fluid communication between an outlet from the lower end of the rotatable pipe and a plurality of orifices radially offset from an axis of the rotatable pipe;KBR 00-0671/KEL 83 March 1,2001 CA 02373558 2002-02-26 a support housing having a mount for attachment to the pelletizing vessel and upper and lower bearings adjacent respective upper and lower ends of the support housing for rotatably receiving the rotatable pipe;and a drive wheel secured to the rotatable pipe. 15. The prilling head assembly of claim 14 further comprising a detachable coupling in the rotatable pipe between the rotary union and the upper bearing. 16. The prilling head assembly of claim 14 wherein the mount comprises a mounting flange and the support housing includes a fixed pipe depending from the mounting flange and having a larger inside diameter than the outside diameter of the rotatable pipe. 17. The prilling head assembly of claim 14 further comprising a lower dust seal about a lower end of the fixed pipe between the lower bearing and the prilling head, and an upper dust seal about the rotatable pipe adjacent an opening in the mounting flange receiving the rotatable pipe. 18. The prilling head assembly of claim 14 wherein the support housing includes a top flange secured by a bracket in spaced relation above the mounting flange wherein the upper bearing is secured to the top flange. 19. The prilling head assembly of claim 18 wherein the drive is disposed between the top flange and the mounting flange. 20. The prilling head assembly of claim 16 further comprising a port for introducing inert gas into an annulus between the fixed pipe and rotatable pipe. KBR 00-0671/KEL 83 March 1,2001 CA 02373558 2010-02-23 21. A process for pelletizing a petroleum resid, the process comprising the steps of: (1) heating the resid to a temperature at which it is in a liquid state;
  2. 2
    (2) continuously feeding the molten resid to an inlet of a centrifugal prilling head comprising a plurality of radially arrayed discharge orifices in fluid communication with the inlet;
  3. 3
    (3) rotating the prilling head to discharge the resid from the orifices into free space near an upper end of a pelletizing vessel having a diameter larger than a throw-away diameter of the discharged resid;
  4. 4
    (4) allowing the discharged resid to break apart and form into substantially spherical pellets in a high temperature zone of the pelletizing vessel at which the resid is liquid, and to fall downwardly into contact with a cooling medium in which the resid is insoluble and which is maintained at a temperature effective to cool/solidify the pellets;
  5. 5
    (5) withdrawing a mixture of the solidified pellets and the cooling medium from the pelletizing vessel; and (6) substantially separating the pellets from the cooling medium. 22. The process of claim 21 further including the step of:venting vapor near an upper end of the pelletizing vessel and/or the step of heating an upper end of the pelletizing vessel to maintain a substantially constant temperature zone in the vicinity of the prilling head. 23. The process of claim 21 further comprising the step of: transporting the recovered pellets at ambient temperature to a location remote from the pelletization vessel where the CA 02373558 2010-02-23 pellets are used for combustion, as a combustion improver or additive to coke and/or coal, in admixture with a cutterstock for fuel oil, or the like. 24. The process of claim 21 further comprising the step of: contacting a soft petroleum resid with air at a temperature from about 350° to about 700°F for a period of time effective to reduce the penetration of the resid to essentially 0 and increasing the softening point temperature to above 200°F to form a hard resid suitable for use as the resid feed in the heating step. 25. A process for making petroleum resid pellets from a soft petroleum resid, the process comprising the steps of: contacting a soft resid having a penetration greater than 0 and a softening point temperature below about 200°F with air at a temperature from about 350° to about 700°F for a period of time effective to form a hard resid having a penetration of essentially 0 and a softening point temperature above 200°F;and forming the hard resid into pellets. 26. The process of claim 25 further comprising the step of: burning the pellets as a fuel or fuel additive, for example. 27. Substantially spherical, homogeneous petroleum resid pellets suitable for combustion having a size range between 0.1 and 10 mm, a penetration of essentially 0, a softening point temperature from about 200° to about 400°F, preferably from about 230° to about 350°F, a residual water content of from 0.1 to 10 weight percent, and a sulfur content less than 10 weight percent. 28. The resid pellets of claim 27 comprising a hard resid produced by a process comprising contacting a soft resid with air at an elevated temperature for a period of time effective to convert the soft resid to hard resid, preferably from 2 to 5 hours.