A413016 NCU2 09 METSO Filter Modules
Item NO.:
A413016 NCU2 09 METSOGoods Stock:
3Payment:
T/TProduct Origin:
FinlandColor:
NewShipping Port:
ChinaLead Time:
2-3daysWeight:
0.55kgBrand:
METSOA413016 NCU2 09 METSO Filter Modules
Product Description:
Metso filter modules are high-performance component assemblies designed for industrial liquid-solid separation systems, primarily within the mining, mineral processing, and chemical industries. These modules act as the standardized functional blocks within larger filtration equipment, such as horizontal belt filters, ceramic filters, and automatic pressure filters. By integrating advanced structural materials, precise filtrate drainage channels, and durable cloth media support, these modules ensure optimal cake formation, efficient washing, and maximum moisture reduction during continuous industrial operations.
The technical characteristics of Metso filter modules are optimized to handle high-density slurries and aggressive chemical environments:
Operating Pressure Limits: Designed to withstand high differential pressures, typically ranging from 0.5 bar vacuum for cloth systems up to 16 bar positive pressure for advanced chamber filter configurations.
Filtration Area Density: High-efficiency design that maximizes active filtration area per module, varying from 1 square meter to over 10 square meters depending on the equipment series.
Temperature Resilience: Capable of continuous operation in elevated process temperatures, often rated from 5°C up to 90°C for standard modules, with specialized versions exceeding 110°C.
Slurry Concentration Compatibility: Engineered to process feeds with solid concentrations ranging from low-density streams (5 percent solids) up to heavy, viscous slurries exceeding 65 percent solids.
Material Construction: Utilizes premium chemically resistant materials such as high-density polypropylene (HDPE), duplex stainless steel, or specialized elastomers to match specific process chemistries.
Drainage Efficiency Rating: Features optimized internal hydraulic channels designed to minimize filtrate flow resistance, supporting high liquid discharge rates of several cubic meters per hour per module.
Metso filter modules provide distinct operational benefits that improve processing plants' overall efficiency and reduce total cost of ownership:
Modular Scalability and Easy Maintenance: The standardized modular design allows individual sections of the filter to be serviced, repaired, or upgraded without the need to dismantle the entire filtration machine, drastically reducing maintenance downtime.
Optimal Cake Uniformity: Engineered fluid dynamics within the module ensure an even distribution of slurry across the filter media, resulting in a uniform cake thickness which is critical for effective cake washing and moisture air-blowing.
Superior Chemical and Abrasion Resistance: The selection of high-grade polymers and alloys protects the module from the abrasive wear of coarse mineral particles and the corrosive effects of acidic or alkaline process liquids.
Enhanced Cake Moisture Reduction: Advanced drainage geometries prevent the re-wetting of the filtered solids by ensuring that all captured filtrate is evacuated rapidly before the cake discharge phase.
Extended Filter Media Lifespan: The structural support surfaces of the module are precision-machined to eliminate sharp edges and minimize localized mechanical stress on the filter cloth or ceramic plates, extending media life and reducing replacement costs.
These modules are essential components in large-scale industrial separation and dewatering plants:
Mineral Concentrate Dewatering: Used to remove water from valuable mineral slurries, including copper, iron ore, gold, zinc, and nickel concentrates, preparing them for transport or smelting.
Tailings Management: Facilitating environmental compliance by dewatering mine tailings into high-density cakes for dry stacking, which eliminates the need for large, high-risk tailings dams.
Chemical Process Industries: Separation of crystals, pigments, and catalysts from parent liquids in chemical manufacturing plants where purity and high yield are required.
Metallurgical Leaching Processes: Utilized in hydrometallurgical plants for the separation of pregnant leach solutions from waste residues, often incorporating multi-stage counter-current cake washing.
Industrial Wastewater Treatment: Dewatering heavy industrial sludge and neutralizing neutralized effluent streams to recycle process water and comply with environmental discharge regulations.
To preserve the structural integrity of the filter modules and ensure safe operation, the following guidelines must be followed:
Chemical Compatibility Verification: Always verify that the process chemistry, including trace solvents or unexpected chemical additives, is compatible with the module's material composition to prevent swelling, cracking, or rapid corrosion.
Feed Pressure Regulation: Strictly monitor and control the inlet feeding pressure. Subjecting the module to pressures beyond its maximum rating can cause structural deformation, premature fatigue failures, or catastrophic housing rupture.
Preventive Cleaning Cycles: Implement regular cloth or plate washing cycles using recommended cleaning agents to prevent the blinding of the filter media and the buildup of hardened solids inside the internal drainage channels.
Correct Fastener Torque: When installing or replacing a module within the filter frame, tighten all retaining bolts and seals to the exact manufacturer torque specifications to prevent structural flexing and leakage under pressure.
Safe Handling and Storage: When modules are removed for extended maintenance shutdowns, store them away from direct sunlight and extreme ozone sources, as prolonged ultraviolet exposure can degrade polymer-based module components.
The structure and details of the product:

Our services:
Shipping Port: China
Payment: Bank of Chicago, Bank of Singapore
Express cooperation: fedex, DHL, UPS and your express account
Service: Professional Sales provides 24 hours /7 days online service
Warranty: one year
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