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Device for biological reduction of organic decomposition substances in original state by segregation and compaction, comprises two-components, inlets and outlets, an evacuation mechanism, a segregation plate and flow guidance plates
Device for biological reduction of organic decomposition substances in original state by segregation and compaction, comprises two-components, inlets and outlets, an evacuation mechanism, a segregation plate and flow guidance plates
The device for biological reduction of organic decomposition substances in original state by segregation and compaction, comprises a cylindrical tubular or a rectangular box-like shaped two-components, inlets and outlets, which are attached at its front side, an evacuation mechanism attached at its lowest point, a segregation plate provided with openings, and flow guidance plates attached at specific points. The device is completely or partially made of plastic or stainless steel. Constantly decelerating and continuously slowing down surface flow (4.1) and bottom flow (4.2) are generated. The device for biological reduction of organic decomposition substances in original state by segregation and compaction, comprises a cylindrical tubular or a rectangular box-like shaped two-components, inlets and outlets, which are attached at its front side, an evacuation mechanism attached at its lowest point, a segregation plate provided with openings, and flow guidance plates attached at specific points. The device is completely or partially made of plastic or stainless steel. Constantly decelerating and continuously slowing down surface flow (4.1) and bottom flow (4.2) are generated. The bottom flow flows in the reverse direction above the segregation plate. The opening of the segregation plate is present in a first third portion of the segregation plate facing the front side, runs across the entire thickness of the plate, forms a link to a stationary zone (6) and through which the organic decomposition substances reach the stationary zone and sediment there. The counter-current flows are caused by the inlets and the outlets that are placed at different elevations. The openings of the segregation plate are differently distributed and have a definite size-dependent strength.
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