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Product Info
Our EcoActiv CRC coating is a unique coating applied to the condenser units, coils, fins and fans of commercial HVAC units, air conditioning systems and refrigeration that will fundamentally reduce energy consumption due to the follow properties of the coating.
The coating once applied will ensure that moisture/water does not build up and frost. Normally the refrigeration system would frost due to moisture and then the system would have to run a defrost cycle (heating) in order to eliminate the frost build up. EcoActiv CRC being hydrophilic, means that the water isn't able to adhere to the surface.
As the equipment is required to run the defrost cycle less frequently, this creates a greater life span of the equipment and less maintenance costs.
The coating is also antistatic which eliminates contaminants such as mould and other bacteria from adhering to surfaces, leaving the equipment to run more efficiently and eliminating mould and bacteria being circulated throughout the space, making for a cleaner work environment.
How does it work?
All refrigeration works in a similar manner to air conditioning, HVAC, commercial refrigeration, freezers and cool rooms by running a condenser which holds the gas and in turn makes the fins of the system cold with a fan to move the cold air around
Antistatic Properties
The antistatic properties repel the dust that is usually attracted by the heat of the motor and condenser causing static itself, instead of the fins and coils icing up when the coating is applied the moisture and dust will simply run off, thus preventing mould, dust and bacteria build up that would normally circulate throughout a building.
Also by ensuring that dust is not able to adhere and build-up, it means that air can flow freely through the filters without having to place undue strain on the motor to work harder to draw in the fresh air.
This picture outlines a significant build up in the filters, restricting the air flow.
Hydrophilic Properties
The hydrophilic properties meaning that it likes water, ensure that beading does not occur and that the moisture and dust simply run off, thus preventing the opportunity for the water to become ice and reduces or eliminates the equipment going into the defrost cycle.
A defrost cycle is simply the system recognising that ice has formed or begun to form and automatically begins to rectify the problem.
Any ice building up will reduce the air flow and the efficiency of the system and this is why it must go through the defrost cycle.
Reducing or alleviating the need for the system to continually go into the defrost cycle dramatically reduces the amount of energy consumed.