A reduced CO₂ footprint

Conduct uses sustainable material: Magnelis® steel. This specific coating consists of zinc, 3.5% aluminum, and 3% magnesium. The material is corrosion-resistant and self-healing, strong enough for extreme weather conditions. Thanks to the superior corrosion resistance of Magnelis®, the end-user can rely on a guaranteed long lifespan for industrial and coastal PV projects.

 

PVshelter contributes to a reduced CO₂ footprint
All Conduct PVshelters are equipped with Magnelis® steel. Magnelis® steel is less harmful to the environment as the coating contains less zinc, which can otherwise leach into the soil through rainwater. It offers excellent corrosion resistance and a self-healing capacity. Magnelis® steel, thanks to a clean production process, contributes to a reduced CO₂ footprint. The frame and mounting rail of the PVshelter are made from ConStrut® material. By using ConStrut® and applying proper installation methods, installers can ensure that PV installations perform optimally for many years.

 

RoofSupport contributes to a reduced CO₂ footprint
Our wire mesh cable tray is manufactured from high-quality steel with surface treatment EZ1000 and contributes to a reduced CO₂ footprint. As a result, RoofSupport offers excellent corrosion resistance. The combination of zinc, aluminium and magnesium forms a protective layer that effectively protects the steel against corrosive environments, such as salty air and industrial pollution.

 

Conduct has its own strut profiles called ConStrut®
The frame and mounting rail of the PVshelter are made from ConStrut® material. These strut profiles are also available separately. ConStrut® provides improved corrosion resistance through Magnelis®-coated strut profiles, offering a very high level of quality.