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FSI - Model CMF -Coiled Membrane Filter
Coiled Membrane Filter (CMF) is an advanced, robust, and simple Ultra filtration/Micro filtration Technology. CMFs are constructed using hollow fibers or tubular membrane filters. They are cost effective for removing high concentrations of sub-micron particles from water (up to 5% by weight) for industrial and municipal applications.
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- Secondary flow vortices, i.e. Dean Flow, is produced in the CMF.
- The sheer force of the vortices prevents contaminants from adsorbing to the membrane wall.
- Flow trajectory creates a rapid mixing between the boundary layer and bulk phase, which provides an efficient mass transfer to minimize membrane surface fouling.
- Self-cleaning mechanism results in enhanced flux rate, longer membrane service life and reduced energy footprint.
Coiled Membrane Filter
- Compact e.g. 3.5" * 6.5" CMF vs. 72" long conventional filter
- Dean flow permits effective cleaning
- Union connection - allowing quick and easy replacement to the manifold
Unhoused Module Housing
- Simplified design - allows filters to be mounted under a tank cover
- Cost savings - saves piping, fittings and housing costs
- Modular design - facilitating system scale-up or scale-down
Advanced Membranes
- Producing high quality effluent that has SDI < 3
- Highly hydrophilic - suitable for water applications
- Robust - seven bore design providing high mechanical strength
- CMFs outperform other MF/UF OEMs with superior technology enabling smarter design to address the most challenging process and energy needs.
- CMFs minimize maintenance and operating costs while enhancing the flux rate, thus reducing life cycle cost. Flux is doubled/consumed energy is halved compared to a conventional filter based on side-by-side testing.
The Waste Water Treatment System employs CMF to achieve an effective filtration. Some major applications includes:
- Cooling tower blowdown water
- Heavy metal removal
- Mop water
- Semiconductor and photovoltaic wastes
- Fluoride and high solids removal
- Tumbler deburring slurries
