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Methods and apparatus for de-watering sludge

a technology of dewatering sludge and sludge, which is applied in the direction of lighting and heating equipment, centrifuges, separation processes, etc., can solve the problems of insufficient squeeze of sludge, and insufficient drying of sludg

Inactive Publication Date: 2001-05-24
WAWCON
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Although this technique may be useful for de-watering certain types of sludge, problems remain.
For instance, if there is too little sludge being fed into the device, the sludge may not be squeezed enough.
Consequently it may not be dried sufficiently.
Further, if too much sludge enters the device, it may come under too much pressure and may be forced out through the device.
Consequently, sludge may be lost and may need to be re-circulated.
Still further, if a polymer has been used on the sludge being de-watered, this system may, if subjected to high pressures, break polymer bonds and may therefore not be effective in de-watering sewage sludge, especially re-circulated sludge.
Although this technique also may be useful for de-watering certain types of sludge, similar problems remain due mostly to the fact that this technique relies upon pressing of the sludge to achieve drying.
Again, if there is too little sludge being fed into the device, the sludge may not be squeezed enough.
On the other hand, if too much sludge enters the device, it may come under too much pressure and may be prematurely forced out of the device.
Consequently, sludge may be lost and may need to be re-circulated.
Still further, if a polymer has been used on the sludge being de-watered, this system may, if subjected to high pressures, break polymer bonds.
For this reason, such a system may not be effective in de-watering sewage sludge, especially re-circulated sludge.
Although this system may be useful for de-watering certain materials, problems remain.
Further, it appears that this device may subject sludge to great forces, particularly after transfer to the larger outer centrifuge, so that polymer bonds may be broken.
Problems enumerated above are not intended to be exhaustive but rather are among several that tend to impair the effectiveness of previously known devices for removing water and liquids from sludge.
Other noteworthy problems may also exist; however, those presented above should be sufficient to demonstrate that devices appearing in the art have not been altogether satisfactory.

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  • Methods and apparatus for de-watering sludge

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Embodiment Construction

[0023] Embodiments of devices for de-watering material are illustrated in FIGS. 1-4. As illustrated, the apparatus includes a stationary outer housing 1, which may enclose, partially or completely, the contents of the apparatus. In one embodiment, outer housing 1 may be fabricated from a material such as carbon or stainless steel. Sealing may be with the benefit of the present disclosure, will understand that main shaft 7 may be constructed without a hollow portion. In such an embodiment, sludge may be introduced directly into the apparatus by a separate feed tube or any other suitable manner known in the art.

[0024] With reference to FIGS. 2 and 2A, it may be seen that slurry may be fed out inlet holes 12, located around a hollow portion of shaft 7, and into a space defined by an outer surface of rotating screw shaft 8 and first stage drum 9. Specifically, in FIG. 2, slurry may be fed from a hollow portion of main shaft 7, out inlet hole 12 (illustrated as the center hole), and into...

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Abstract

An apparatus for de-watering sludge. A main shaft is rotated about a longitudinal axis at a first rate. A screw shaft coupled to the main shaft is rotated about the longitudinal axis at the first rate. Screw flighting coupled to the screw shaft is rotated about the longitudinal axis at the first rate. A first and second stage drum are rotated about the longitudinal axis at a second rate. Sludge is introduced to a first area defined by an outer surface of the screw shaft and an inner surface of the first stage drum. Moisture is removed from the sludge through a first slot coupled to the first stage drum. The sludge is transported with the screw flighting from the first area to a second area defined by an outer surface of the screw shaft and an inner surface of the second stage drum, the second area being larger than the first area. Moisture is removed from the sludge through a second slot coupled to the second stage drum.

Description

[0001] 1. Field of the Invention[0002] The present invention relates generally to the fields of de-watering sludge. More particularly, it concerns methods and apparatus for de-watering sludge by utilizing a multi-stage, rotating drum technique.[0003] 2. Description of Related Art[0004] The ability to remove water from products such as waste products has long been recognized as useful. Removing water from sludge, and more particularly, sewage sludge, greatly reduces the weight of material to be transported for disposal and / or use. Additionally, de-watering sludge may facilitate the processing of sludge into soil conditioners and fertilizers.[0005] De-watering of sludge has been accomplished in the past by various methods, including open-air drying, vacuum filtration, centrifugation, mechanical pressing, and other mechanical separation. Although each has utilized at least a degree of usefulness, room for significant improvement remains.[0006] U.S. Pat. No. 3,695,173 describes a techni...

Claims

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Application Information

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Patent Type & Authority Applications(United States)
IPC IPC(8): B01D17/038B01D29/23B30B9/12C02F11/125F26B11/04
CPCB01D29/23B30B9/12B30B9/128C02F11/125F26B11/0436F26B11/0481F26B2200/18B01D29/6476
Inventor HUEBNER, GARY W.
Owner WAWCON