Anticorrosive lining and acid-resistant masonry

We design and implement lining solutions to protect equipment, structures and systems exposed to highly corrosive environments. We select the technology and materials best suited to the operating conditions, extending the service life of assets and reducing the risk of failure.

Acid-resistant masonry as an industrial anticorrosive lining.
Acid-resistant masonry as an anticorrosive lining.

Corrosion begins long before it becomes visible

Chemical environments, humidity, gases and aggressive fluids progressively deteriorate industrial assets. An adequate protection strategy makes it possible to preserve their integrity, reduce maintenance costs and ensure operational continuity.

The solution depends on the service environment

We select materials and lining systems according to the specific conditions of each application, ensuring chemical compatibility, adhesion and long-term performance.

This makes it possible to protect new equipment, rehabilitate existing assets and extend their service life without fully replacing the infrastructure.

Variables that define a lining system

The substrate and its condition govern everything else. Operating ranges and service life are defined for the specific medium, its concentration and the actual operating regime.

Substrate and its current condition
Determines whether the asset accepts a lining or should be repaired or replaced first. Steel and concrete are not treated the same way.
Chemistry of the medium and its concentration
Determines the resin type of the system and whether the requirement is anticorrosive, acid-resistant or both.
Temperature and thermal cycles
Determines the system and its behavior against the expansion of the substrate.
System and thickness
Determines the number of coats, the reinforcement when present and the total application time.
Surface preparation
Determines adhesion and, with it, the result. It is the variable that most often explains an early failure.
Application conditions and available window
Determines whether the work is viable in the field: humidity, temperature, ventilation and curing time before returning to service.