Claims
- 1. Method for the reduction of the water content bound by capillary action in fiber cells in solids and/or sludges, ground and screened to form a mat of spread material, by the action of thermal energy and pressure on the input material that is to be dewatered, wherein the thermal energy comprising saturated steam and the mechanical energy as surface pressure on the input material is fed into and exercised on an MTE pressure chamber of a filter press, characterized by the following process steps:
processing the input material separately by grinding and screening the input material and then feeding it into a plurality of spreader hoppers depending on grain size and screened grain size distribution, wherein coarse material, thus separated, is fed to a first spreader hopper, which contains only a residue of fine material below a permeability limit; and wherein the fine material, thus separated, with a grain size under 3 mm, is simultaneously fed into a second spreader hopper; from the second spreader hopper, which precedes the first spreader hopper for the coarse material, spreading a thin layer of fine material as a first deposit onto a spreading, loading and filtering belt; withdrawing by a transfer conveyor belt, from the first spreader hopper, a substantially thicker coarse material layer and then laying that coarse material layer as a second deposit onto the fine material layer to form a sandwich mat of spread material; moving the sandwich mat by the spreading, loading and filtering belt into the MTE pressure chamber of the filter press for dewatering; and taking out pressed dry material from the filter press.
- 2. Method according to claim 1, wherein the method is performed continuously.
- 3. Method according to claim 1, wherein the method is performed discontinuously.
- 4. An apparatus for reducing moisture bound by capillary action in an input material, the apparatus comprising:
an input material hopper; a breaker mill adapted to grind the input material; a sifting device adapted to sift the material into a first spreader hopper for coarse material and, by way of a chute and conveyor belt, into a second hopper for screened-out fine material; a second vertically adjustable gate adapted to spread the fine material from the second spreader hopper onto an endless spreading, loading and filtering belt; a transfer conveyor belt adapted to withdraw coarse material from the first spreader hopper; a first vertically adjustable gate adapted to spread the coarse material from the transfer conveyor belt onto the fine material spread from the second spreader hopper to form a sandwich mat; a heatable filter press, including an MTE pressure chamber which is adapted to be closed in a gas-tight and pressure-tight manner, and which is adapted to press and dry the sandwich mat.
- 5. The apparatus according to claim 4, wherein the spreading, loading and filtering belt is adapted to pass discontinuously through the filter press in a cyclical operation.
- 6. Apparatus according to claim 4, wherein the filter press operates continuously, and wherein the filter press comprises:
a continuously operating double-belt press; and lateral pressure chamber walls between which an upper and lower endless metal mesh belt is adapted to run.
- 7. Apparatus according to claim 4, wherein the filter press operates continuously, and wherein the filter press comprises:
a roller frame press with a plurality of rollers in tandem; and lateral pressure chamber walls between which an upper and lower endless metal mesh belt is adapted to run.
Priority Claims (1)
Number |
Date |
Country |
Kind |
DE 100 16 944.9 |
Apr 2000 |
DE |
|
Parent Case Info
[0001] The German priority document, DE 100 16 944.9, filed Apr. 9, 2000 is hereby incorporated by reference.