CorroHeat®
H e a t   e x c h a n g e r s

Industrial plants in which the exhaust air is corrosive incur high energy costs due to the need for high rates of air change. Increased energy costs force us into saving and re-using energy.

CorroHeat® heat exchangers are produced in the following versions:
- air/liquid
- liquid/liquid
- gas/gas or gas/air

Typical applications of CorroHeat® heat exchangers are
- heat recovery from gases or liquids
- heating of gases or liquids
- flue gas condensation

The heat exchangers are principally intended for environments characterized by dust-laden,
 
CorroHeat® type CWX cylindrical heat exchanger in the course of manufacture and ready for installation in a GRP casing. Tubes of XLP.


CorroHeat® type CWX cylindrical heat exchangers with GRP casings ready for delivery. In the foreground, a CorroClean® droplet eliminator of PP.
  abrasive, corrosive air/gas or corrosive liquids. In CorroHeat® heat exchangers, all parts are therefore made of corrosion-resistant plastic materials, such as PE, XLP, PP, PVDF and PVC, with casings of GRP. The heat exchangers are produced in a number of versions, sizes and materials, depending on the flow rates, media and temperatures. Automatic flushing is available as an option.

CorroHeat® heat exchangers are available as tubular heat exchangers and as cross-flow plate heat exchangers.

Typical application for CorroHeat® heat exchangers include surface treatment plants, the pulp, chemicals, pharmaceutical and electronics industries, and in the condensation of flue gases.



The foundry takes benefit of the CWX heat exchanger...
 
Manufacture of the CWX heat exchanger at the factory in Valdemarsvik. The field of application is in a foundry to take care of the excess heat. The plastic materials in the heat exchanger are less sensitive to silting up. This makes the CWX heat exchanger especially suitable in invironments with many dust particles, for instance in foundries and paintwork shops.

  Mounting of the CWX heat exchanger on the roof of the foundry.