Screw Press – SP

Screw Press – SP Screw press designed to achieve high dewatering performance along with maximum reduction in energy and maintenance costs.  The SP's fully enclosed construction, automated control of the entire process, and minimal noise also ensure an optimal working environment in conjunction with limited operating costs.

Belt Press – C

Belt Press – C Double belt press designed for dewatering fibrous sludge, both primary and mixed fibrous sludges (pulp and paper industry, sugar beets mills, etc).  Characterized by a high-pressure zone consisting of 7 "S" rollers of equal diameter, which can be supplemented with the application of a final pressure NIP, allowing further increase of …

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Belt Press – SD

Belt Press – SD Double belt press for inert sludge and expressly designed to treat high flow rates with low dry inlet concentrations. The large gravity zone and low-pressure system, with large-diameter perforated roller, allow even sludge containing very fine and unstable solids to be effectively dewatered.

Belt Press – MDC

Belt Press – MDC Double belt press used for dewatering biological sludge. Its structure is simple and economical, with minimal footprint and optimum yields. MDC is a compact machine, fully enclosed on 2 sides, with "S" shaped pressing zone consisting of 6 or 8 rollers. It is available with galvanized or stainless steel frame and …

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Belt Press – CMF Optima

Belt Press – CMF Optima Double belt press used for dewatering sludge, both municipal and industrial. Designed with a modular frame, it enables high performance with low investment costs, thus optimizing the cost/benefit ratio. CMF Optima is available in two versions: "Standard", for thickened sludge at normal concentration, and "Cascade", in combination with a belt …

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Belt Press – WR Greenland

Belt Press – WR Greenland A double belt press used for dewatering sludge of both municipal and industrial origin and designed to achieve the highest performance, in terms of final dryness and treatable flow rate.  The high performance of WR Greenland is made possible by the increase in effective filtration areas, the innovative design of …

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