Claims
- 1. A process for separating undesired components from a suspension via flotation in a separating space having a longitudinal axis, an outlet end positioned at a first location on the longitudinal axis, and an inlet end positioned at a second location on the longitudinal axis that is axially displaced from the first location, the process including:
- adding air to the suspension to produce air bubbles;
- creating micro turbulence in the suspension to mix the air bubbles with the suspension, whereby the micro turbulence created provides energy to join the air bubbles with the undesired components;
- feeding the suspension into the separating space through an inlet at the inlet end of the separating space;
- rotationally moving the suspension around said longitudinal axis to separate the suspension into separated fractions including a flotation portion and a purified portion;
- axially moving the flotation portion with respect to the longitudinal axis of the separating space, the flotation portion including the undesired components to be removed from the suspension;
- moving the purified portion, including components remaining after the undesired components have been removed from the suspension, in a same direction with said flotation portion; and
- removing the flotation portion and the purified portion of the suspension through separate outlets at the outlet end of the separating space.
- 2. The process according to claim 1, further comprising:
- wherein a boundary layer is formed between the flotation portion and air separated from the flotation portion.
- 3. The process of claim 1, wherein the separating space is substantially cylindrical relative to said longitudinal axis.
- 4. The process of claim 3, further including: extending the superimposed movement of the suspension substantially parallel to and in a direction of gravity.
- 5. The process of claim 3, further including: locating the inlet of the suspension tangentially to the separating space.
- 6. The process of claim 3, further including: locating the outlet for the purified portion tangentially to the separating space.
- 7. The process of claim 1, further including: adding the air, required for flotation, into the separating space together with the suspension.
- 8. The process of claim 1 further including: admixing the air, required for flotation, in the region of the micro turbulence.
- 9. The process of claim 1, further including: adding the air, required for flotation to the suspension in the separating space.
- 10. The process of claim 1, further including: including dissolved air in the suspension undergoing flotation and mixing the air bubbles with the suspension by a drop in pressure within the suspension.
- 11. The process of claim 1, further including: removing flotated components of the flotation portion from the separating space in several fractions.
- 12. The process of claim 11, further including: separating substances, in one of the fractions, in a subsequent process step.
- 13. An apparatus for separating undesired components from a suspension via flotation in a separating space, comprising:
- a substantially rotationally symmetric flotation container having an inlet end located at a first location on the flotation container, and an outlet end located at a second location on the flotation container;
- the inlet end and the outlet end being axially displaced from each other;
- a suspension inlet located at the inlet end of the flotation container;
- a purified component outlet located at the outlet end of the flotation container for passing components of the suspension other than the undesired components;
- an air supply device for supplying air to the suspension;
- a micro turbulence generator for creating micro turbulence in the suspension; and
- at least one sludge collecting tube for collecting the undesired components, the at least one sludge collecting tube being located in a central region of the flotation container and at a same end of the flotation container as the outlet end.
- 14. The flotation apparatus of claim 13, the suspension inlet being arranged in an upper region of the flotation container and the purified component outlet and the sludge collection tube being arranged in a lower portion of the flotation container.
- 15. The flotation apparatus of claim 13, the flotation container comprising a circular cylinder.
- 16. The flotation apparatus of claim 13, the flotation container having sides that converge in a direction toward the outlet end.
- 17. The flotation apparatus of claim 13, the micro turbulence generator being located at the inlet end.
- 18. The flotation apparatus of claim 17, the micro turbulence generator being a nonsequentially increasing stepped diffusor.
- 19. The flotation apparatus of claim 17, the air supply device being coupled to the micro turbulence generator so that the created micro turbulence mixes the air and the suspension.
- 20. The flotation apparatus of claim 13, the flotation container comprising an air permeable wall, and the apparatus further comprising:
- a second air supply device that supplies air through the air permeable wall.
- 21. The flotation apparatus of claim 13, further comprising a damper positioned one of before and in the suspension inlet;
- the damper being coupled to the air supply device to produce air bubbles via a pressure drop in the suspension.
- 22. The flotation apparatus of claim 13, a ratio of a largest inner diameter of the sludge collection tube to a largest inner diameter of the flotation container is greater than 0.60.
- 23. The flotation apparatus of claim 13, the sludge collection tube comprising two concentrically oriented tubes, so that different fractions of the undesired components may be separately removed from the flotation container.
- 24. The flotation apparatus of claim 23, at least one of the two concentrically oriented tubes includes a tangentially oriented outlet.
- 25. The flotation apparatus of claim 23, a radially outwardly positioned one of the at least two concentrically oriented tubes includes a tangentially oriented outlet.
Priority Claims (1)
Number |
Date |
Country |
Kind |
43 30 635 |
Sep 1993 |
DEX |
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Parent Case Info
This application is a continuation of application Ser. No. 08/552,205, filled Nov. 2, 1995, (U.S. Pat. No. 56,908,12) which is a continuation of application Ser. No. 08/295,090, filed Aug. 08, 1994 now abandoned.
US Referenced Citations (16)
Foreign Referenced Citations (10)
Number |
Date |
Country |
2120436 |
Oct 1994 |
CAX |
2541136 |
Aug 1984 |
EPX |
0198737 |
Oct 1986 |
EPX |
3306600 |
Feb 1983 |
DEX |
117726 |
Mar 1989 |
JPX |
1558493 |
Apr 1990 |
RUX |
8500760 |
Feb 1985 |
WOX |
8500760 |
Feb 1985 |
WOX |
9115302 |
Oct 1991 |
WOX |
9115302 |
Oct 1991 |
WOX |
Non-Patent Literature Citations (1)
Entry |
Miller et al. "Water De-Oiling in an Air-Sparged Hydrocyclone", Filtration& Separation, pp. 279, 280, and 282, Jul./Aug. 1983. |
Continuations (2)
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Number |
Date |
Country |
Parent |
552205 |
Nov 1995 |
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Parent |
295090 |
Aug 1994 |
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