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 The Next Generation of Air Filtration for Odor and Corrosion Control

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Following the recent launch of their CamPure 8 media in the United States, Camfil’s molecular filtration team explains how this activated alumina-based media is applied to a variety of contexts.

Molecular, or gaseous, filtration of both air and water is essential for odor and corrosion control across many industries. Following the recent launch of their CamPure 8 media in the United States, Camfil’s molecular filtration team explains how this activated alumina-based media is applied to a variety of contexts.

What is CamPure 8 used for?

CamPure 8 is a high-quality chemical adsorbent based on activated alumina co-formed with a proprietary impregnation system to target oxidizable acidic gasses. With the ability to be installed in any manufacturer’s loose-fill filters, Campure 8 is highly versatile. Because it oxidizes gasses that are responsible for the corrosion of electronic control equipment, the CamPure 8 can be applied to a variety of crucial industries, such as:

Gasses targeted by the CamPure 8 media include:

  • hydrogen sulfide and sulfur dioxide

  • formaldehyde, a hazardous volatile organic chemical (VOC) in many indoor air applications

  • ethylene, the gaseous agent responsible for promoting the ripening process in fruit, vegetables, and flowers.

How does CamPure 8 work?

Potassium permanganate is an oxidizing agent that can remove odors and gasses from the air and is the primary chemical used in the production of Camfil’s CamPure 8 molecular filtration media.

The spherical shape of each CamPure 8 bead is created by co-forming the potassium permanganate and other chemical binders with an activated alumina powder which ensures uniform distribution of the chemical during production. This complete chemical impregnation enables CamPure 8 to achieve high removal efficiency and long life against oxidizable gaseous contaminants.

CamPure 8 media is tested in accordance with ISO 10121-1 to closely reflect the operating conditions where the media would be…

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