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Oct 27, 2020

ECR - Total pharma dedusting filter systems

ECR dedusting filter systems are designed for the filtration of process air or other gasses, predominantly in the pharmaceutical solid dosage manufacturing process (fluidized bed coating, tablet compression, drum coating, etc.) and similarly demanding processes with the formation of challenging dust in the chemical industry.

There are several areas where our ECR dust collectors excel that make them the first choice of users when it comes to selecting dust collection filter systems for processes with the most demanding operating parameters. These areas are:

  1. Containment: The ECR dust collectors have been developed from the ground up to meet the containment requirements of the pharmaceutical and chemical industries. They can cover a wide range of containment requirements during dust discharge (emptying the dust container) and filter element replacement. There are several solutions for each of these processes, from the highest performance to the most economical.
  2. Explosion safety: The second area in which ECR dust collectors excel is their inherent explosion protection. They can handle most potentially explosive media (dry dust or hybrid mixtures) without the need for an external autonomous explosion protection system. They offer the highest filtration efficiency and built-in explosion protection in a compact volume. All implemented explosion protection solutions have been extensively tested under the most vigorous conditions.
  3. ROTATRONIC – Smart Filter Cleaning Technology: The integral parts of the ROTATRONIC System are the ROTATRONIC Mechanics and the ROTATRONIC Control. Together, they guarantee efficient and optimized cleaning of the filter elements and a long service life of the ECR dust collectors.
  4.  Efficient filtration: It is not only the high filtration grade that determines the efficiency, but there are other factors that are equally important. Combining the optimum filter medium with the other physical properties of ECR filter elements, such as optimal pleat geometry, compact design, large surface area, excellent cleanability, and inherent explosion protection, results in efficient and cost-effective filtration.