Gold Series Camtain

The Gold Series Camtain dry dust collector is specifically designed for applications in the pharmaceutical and chemical industry, where harmful substances are present such as APIs and therefore, containment is required to protect the operators from exposure. The modular extraction system is available for medium to high air volumes and tested to meet ATEX & NFPA standards, incorporating different explosion protection options.

  • Bag-In/Bag-Out safe-change for filters and continuous liner system for dust discharge
  • Modular system available for larger air volumes
  • Cartridges using HemiPleat filter technology
  • High-efficiency filters up to E12 99.5% at MPPS, or greater than 95% at ePM1
  • Specially treated filter media repels fine particulates for a lower pressure drop and longer filter life

Video

Specifications

Application
The Farr Gold Series® Camtain® is used in a wide range of pharmaceutical applications including tablet presses, coating, fluid bed and spray drying, blending, granulation and general ventilation. Contact Camfil for more information
Comment
The Gold Series Camtain is perfect for high-efficiency filtration where recovery of the product is not required. Safe-change containment systems are available for both the filter cartridges and discharge system underneath the collector. The cartridge change utilizes the safe-change filter replacement method while the discharge uses continuous liner technology. The Gold Series Camtain can also support traditional dust collection for nuisance dusts and fumes that do not require full isolation and containment.

Cartridges: Poly-Tech™ media’s filtration efficiency is 99.99% on 0.5 μm and larger particles.
The Gold Series® meets the 2 mg/m³ or less emissions requirement to recirculate air back on non-hazardous dusts, in most cases.
The HemiPleat cartridge uses optimal pleat spacing with synthetic glue beads to hold the pleats open. HemiPleat breathes more air with less energy and increases the cleaning effectiveness of the reverse pulse, thus resulting in a lower pressure drop.

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