"Excellence in Engineering"
MeTasis manufactures a wide range of polishing filters housings, mainly are bag filters which consists of single bag and multi-bag filters and cartridge filters. These filters are designed according to ASME standards. Standard materials available are SS304, SS316, and SS316L. Specific requests for threaded, flanged or sanitary connections can be provided. MeTasis Engineering also provides complete filtration skid/systems for various industries and applications.
A Filter Housing is a casing around filter Cartridges or Bags or Basket. Filter Housings are available in different sizes and styles. The design of Filter Housing is dependent on the following factors such as flowrate, operating pressure, operating temperature, cost, total suspended solid(TSS), and others. The Fluid enters through Inlet nozzle of the housing which directs the flow to the filter cartridge or bag put inside. The filter cartridge or bag separates the contaminants from the fluid. After this process, the clear fluid comes out from the outlet nozzle.
Bag filters are used for the clarification/filtration of fluids that have a relatively small loading of particles to be removed. The particle suspension passes through and the particles settle in the bag. MeTasis offers bag filters in a variety of sizes, materials, and micron ratings. MeTasis stocks an extensive inventory of liquid filter bags that are suitable for most applications and available in various materials. Most bag filters are available with a polypropylene, carbon steel, or stainless steel ring.
Cartridge filters are modular filters that are used to remove debris from various liquids. They use either a pleated fabric or a screen to filter the liquid, trapping sediment and sometimes even chemicals in the process. Surface and depth are two types of cartridge filter that can be used. With surface cartridge filters, particles are retained on the surface of the media which forms a layer of material that increases productivity. Depth cartridge filters use a thick or multi-layered media to form a twisted path that then retains debris.

