LIQUID-LIQUID EXTRACTION TOWER HAVING CENTER FEED INLET AND PROCESS
This invention relates to a liquid-liquid extraction tower comprising a feed inlet and a plurality of stages and an area for collection of the extract; at least one stage comprising a mixing zone having a driven center horizontal impeller positioned between a pair of horizontal annular shroud baffles having open centers, the impeller having a center impeller plate; wherein the feed inlet is positioned adjacent the center impeller plate. This invention also relates to an improved liquid-liquid extraction process comprising symmetrically introducing the feed adjacent the center impeller plate.
Latest E.I. DU PONT DE NEMOURS AND COMPANY Patents:
1. Field of the Invention
This invention relates to a liquid-liquid extraction tower and a method of operating the same. As used herein, the words “tower” and “column” can be used interchangeably.
2. Description of Related Art
Liquid-liquid extraction involves the transfer of mass from one liquid phase into a second immiscible liquid phase. As defined herein, a “feed” is a liquid supplied to the tower having components that are to be separated, and can have as a major component a feed solvent and as minor components, one or more solutes. As defined herein, “extraction solvent” is the immiscible liquid added to the tower for the purpose of extracting one or more solutes from the feed. As defined herein, the “extract” is the liquid removed from the tower containing the extraction solvent plus the one or more solutes. As defined herein, the “raffinate” is the liquid removed from the tower that contains primarily the feed solvent; it is the remaining feed liquid after the one or more solutes have been removed.
The introduction of the feed into the side of the tower sets up a large-scale circulation that can be deceptively significant and can provide mixing and entrainment of the feed in the assumed single phase extract leaving the tower. This impacts the quality of the extract being removed from the tower. What is needed, therefore, is an improved method of introducing the feed to the tower such that large scale circulation in the area of collection is reduced.
BRIEF SUMMARY OF INVENTIONIn one embodiment, this invention relates to a liquid-liquid extraction tower comprising at least one feed inlet, at least one extraction solvent inlet, at least one extract outlet, and at least one raffinate outlet; wherein the tower further has a plurality of stages and an area for collection of the extract; at least one stage comprising a mixing zone having a driven center horizontal impeller positioned between a pair of horizontal annular shroud baffles having open centers, the impeller having a center impeller plate; the stage further having openings between the pair of horizontal annular shroud baffles and the side of the tower; wherein the feed inlet is positioned adjacent the center impeller plate.
In another embodiment, this invention relates to an improvement in the process for liquid-liquid extraction of an extract from a feed using an extraction solvent, using a liquid-liquid extraction tower having at least one feed inlet, at least one extraction solvent inlet, at least one extract outlet, and at least one raffinate outlet; and wherein the tower further has a plurality of stages and an area for collection of the extract; and at least one stage having a mixing zone having a driven center horizontal impeller positioned between a pair of horizontal annular shroud baffles having open centers, the stage further having openings between the pair of horizontal annular shroud baffles and the side of the tower;
the improvement comprising symmetrically introducing the feed adjacent the center impeller plate.
This invention relates to a liquid-liquid extraction tower comprising at least one feed inlet, at least one extraction solvent inlet, at least one extract outlet, and at least one raffinate outlet, and has a plurality of stages and an area for collection of the extract. The tower has at least one stage comprising a mixing zone having a driven center horizontal impeller having a center impeller plate with the impeller positioned between a pair of horizontal annular shroud baffles having open centers. The stage further has openings between the pair of horizontal annular shroud baffles and the side of the tower. The feed inlet is positioned adjacent the center impeller plate. In a preferred embodiment, the feed inlet is positioned in the area of collection such that the feed is substantially symmetrically introduced adjacent the center impeller plate such that large scale circulation in the area of collection due to the introduction of the feed into the tower is reduced.
In some embodiments, the feed inlet is a sparger having vertical and/or angled orifices.
In some embodiments, the sparger 40 or other device for providing the feed adjacent the center impeller plate must be positioned around or compensate for the center shaft 25 that drives the horizontal impeller 23, that is positioned between the pair of horizontal annular shroud baffles 24. If required, the sparger or other device can be positioned around and/or attached to suitable supports 24a for the horizontal annular shroud baffles.
Also, while the sparger in
In some other embodiments, the feed inlet is two or more tubes symmetrically distributed around the centerline of the extraction tower. In some preferred embodiments, the two or more vertically-oriented tubes are angled or bent toward either the centerline of the tower or toward the horizontal impeller blades of the mixing zone.
In some embodiments, the feed inlet is a substantially vertically-oriented tube located on the centerline of the extraction tower.
As used herein, the term feed inlet means either the end of the feed supply tubing or the surface of any sparger or other device having holes or slots or other orifices where the liquid feed flow is actually exiting the feed piping. In some preferred embodiments the vertical distance between the feed inlet and the bottom edge of the center impeller plate is one inch or less. In some other preferred embodiments, the vertical distance between the feed inlet and the open center of one of the horizontal annular shroud baffles is less than one feed inlet tube diameter. In either case, the vertical distance is measured from the closest point of the end of feed tubing or the surface of any sparger or other device to the plane of the horizontal annular shroud. It is believed the feed inlet can be preferably be positioned as close as 0.25 inches (0.64 cm) vertically from the bottom edge of the center impeller plate; any closer it thought to have the potential to cause operability problems without added benefit.
By the term “symmetrically distributed” it is meant that if there is a plurality of feed inlets, the inlets are uniformly distributed in relation to the centerline of tower and are symmetrically located; that is, at least one vertical plane can be drawn through the centerline of the tower that shows symmetry of the feed inlets. If there is a single feed inlet, at least one vertical plane showing symmetry can be drawn through the centerline of the tower and that inlet.
In another embodiment, this invention relates to an improvement in the process for liquid-liquid extraction of an extract from a feed using an extraction solvent, using a liquid-liquid extraction tower having at least one feed inlet, at least one extraction solvent inlet, at least one extract outlet, and at least one raffinate outlet; and wherein the tower further has a plurality of stages and an area for collection of the extract; at least one stage having a mixing zone having a driven center horizontal impeller positioned between a pair of horizontal annular shroud baffles having open centers, the impeller having a center impeller plate; the stage further having an openings between the pair of horizontal annular shroud baffles and the side of the tower; the improvement comprising symmetrically introducing the feed adjacent the center impeller plate.
In some preferred embodiments, the feed is introduced within one inch or less of the center impeller plate. In some other embodiments, the feed is introduced within one feed inlet tube diameter of the center impeller plate. The feed can be introduced directly into the mixing zone adjacent the center impeller plate by use of a sparger having vertical and/or angled orifices; a vertical tube; or a plurality of vertically-oriented, angled, or bent tubes.
In some other embodiments, the feed is directed through the open center of one of the horizontal annular shroud baffles and into the annular inlet of the mixing zone. In some other embodiments, the feed is symmetrically directed through the open center by use of a sparger having vertical and/or angled orifices; a vertical tube; or a plurality of vertically-oriented, angled, or bent tubes.
Claims
1. A liquid-liquid extraction tower comprising:
- at least one feed inlet, at least one extraction solvent inlet, at least one extract outlet, and at least one raffinate outlet;
- wherein the tower further has a plurality of stages and an area for collection of the extract;
- at least one stage comprising a mixing zone having a driven center horizontal impeller positioned between a pair of horizontal annular shroud baffles having open centers, the impeller having a center impeller plate;
- the stage further having openings between the pair of horizontal annular shroud baffles and the side of the tower;
- wherein the feed inlet is positioned adjacent the center impeller plate.
2. The liquid-liquid extraction tower of claim 1, wherein the vertical distance between the feed inlet and the center impeller plate is one inch or less.
3. The liquid-liquid extraction tower of claim 1, wherein the feed inlet is a sparger having vertical and/or angled orifices.
4. The liquid-liquid extraction tower of claim 1, wherein the feed inlet is a substantially vertically-oriented tube located on the centerline of the extraction tower.
5. The liquid-liquid extraction tower of claim 4, wherein the vertical distance between the feed inlet and the center impeller plate is less than one feed inlet tube diameter.
6. The liquid-liquid extraction tower of claim 1, wherein the feed inlet is two or more tubes symmetrically distributed around the centerline of the extraction tower.
7. The liquid-liquid extraction tower of claim 1, wherein the feed inlet is two or more vertically-oriented tubes that are angled or bent toward either the center of the mixing zone or the horizontal impellers of the mixing zone.
8. The liquid-liquid extraction tower of claim 6, wherein the vertical distance between the feed inlet and the center impeller plate is less than one feed inlet tube diameter.
9. The liquid-liquid extraction tower of claim 1, wherein the mixing zone including the pair of shroud baffles is positioned between an additional set of annular flow baffles that direct flow from the side of the tower.
10. In a process for liquid-liquid extraction of an extract from a feed using an extraction solvent, using a liquid-liquid extraction tower having at least one feed inlet, at least one extraction solvent inlet, at least one extract outlet, and at least one raffinate outlet;
- and wherein the tower further has a plurality of stages and an area for collection of the extract;
- and at least one stage having a mixing zone having a driven center horizontal impeller positioned between a pair of horizontal annular shroud baffles having open centers, the impeller having a center impeller plate; the stage further having openings between the pair of horizontal annular shroud baffles and the side of the tower;
- the improvement comprising symmetrically introducing the feed adjacent the center impeller plate.
11. The process of claim 10, wherein the feed is introduced within one inch or less of the center impeller plate.
12. The process of claim 10, wherein the feed is introduced within one feed inlet tube diameter of the center impeller plate.
13. The process of claim 10, wherein the feed is introduced by use of a sparger having vertical and/or angled orifices; a vertical tube; or a plurality of vertically-oriented, angled, or bent tubes.
14. The process of claim 10, wherein the feed is directed through the open center of one of the horizontal annular shroud baffles and into the annular inlet of the mixing zone.
15. The process of claim 14, wherein the feed is symmetrically directed through the open center by use of a sparger having vertical and/or angled orifices; a vertical tube; or a plurality of vertically-oriented, angled, or bent tubes.
Type: Application
Filed: Dec 17, 2009
Publication Date: Jun 23, 2011
Applicant: E.I. DU PONT DE NEMOURS AND COMPANY (Wilmington, DE)
Inventors: Donald Hugh Marlow (Midlothian, VA), Minye Liu (Hockessin, DE)
Application Number: 12/640,458
International Classification: B01D 11/04 (20060101);