Asbestos Cooling Tower Panel
Asbestos-cement panels used as side cladding, louvers, and top covers in industrial and commercial cooling towers.
* The end date of asbestos use varies by country depending on when it was banned. See the ban year next to each country below.
Description
Asbestos cooling tower panels are flat or corrugated asbestos-cement sheets used as structural and functional components in evaporative cooling towers. These panels served as side cladding, louvered air inlet panels, drift eliminators, top covers, and internal partitions within cooling towers used in power generation, petrochemical refining, HVAC systems for large commercial buildings, and various industrial processes. Manufactured from Portland cement reinforced with chrysotile asbestos fibres at 10 to 15 per cent by weight, these panels were valued for their corrosion resistance, structural strength, and ability to withstand the continuously wet, chemically aggressive environment inside a cooling tower.
Cooling towers containing asbestos-cement panels were manufactured and installed from the 1930s through approximately 1990, with peak production and installation occurring in the 1950s and 1960s during the global expansion of electrical power generation and heavy industry. Major manufacturers included Eternit, Johns-Manville, and CertainTeed. The panels were used worldwide, with particularly extensive installations in the United States, United Kingdom, Australia, Germany, France, Spain, Italy, India, and South Africa.
The unique hazard of asbestos cooling tower panels lies in the mechanism of fibre release. Unlike most asbestos-cement products that release fibres primarily through mechanical disturbance, cooling tower panels are subject to continuous water erosion. Cascading water flowing over and around the panels gradually wears away the cement matrix, freeing asbestos fibres that become entrained in the water system and in the drift, the fine water droplets that escape the tower into the surrounding atmosphere. Studies have documented elevated asbestos fibre concentrations in the air downwind of cooling towers with asbestos-cement components, and in the water basins and blowdown systems of these towers.
The environmental and occupational implications are significant. Workers performing routine maintenance on cooling towers, including cleaning basins, replacing fill media, inspecting structures, and performing seasonal shutdown and start-up procedures, can be exposed to asbestos fibres in both airborne and waterborne forms. Nearby communities may also be exposed through drift emissions. The water discharged from cooling towers with asbestos components can contaminate receiving waterways and soil.
Decommissioning and removal of asbestos cooling tower panels is a specialised operation that requires licensed asbestos abatement contractors with experience in industrial settings. The work typically involves draining and decontaminating the water system, erecting containment around the tower structure, carefully removing panels using wet methods and controlled cutting, packaging all asbestos-containing materials for disposal at a licensed facility, and conducting clearance air monitoring before the site is released. Replacement materials include fibreglass-reinforced plastic (FRP) panels, PVC components, and stainless steel or galvanised steel cladding.
Countries where commonly found
Commercial brands
How to identify
Asbestos cooling tower panels are flat or corrugated grey sheets, similar in appearance to other asbestos-cement products. They are typically 6 to 10 mm thick and may show surface erosion, pitting, or a chalky texture from prolonged water exposure. The panels are rigid and heavy compared to modern FRP or PVC replacements. Look for manufacturer markings or stamps on the panels, which may indicate the brand and era of manufacture. Any cooling tower constructed before 1990 with cement-like panel components should be presumed to contain asbestos until laboratory analysis confirms otherwise. The cooling tower basin may contain asbestos-contaminated sediment.
Health risk & friability
This material has a risk level of 3 out of 5.
It is classified as non-friable, meaning the asbestos fibers were tightly bound within the material matrix at the time of manufacture. When in good condition and left undisturbed, the risk of fiber release is low, although it may release asbestos fibers that could settle beneath these materials, potentially contaminating their surroundings. Activities such as cutting, drilling, sanding or breaking the material can release dangerous fibers and must not be carried out under any circumstances.
What to do if you find this material
Do not disturb, cut, or remove cooling tower panels without first confirming whether they contain asbestos. If the cooling tower is operational, implement an asbestos management plan that includes regular inspection, water quality monitoring for fibre content, and maintenance protocols that minimise panel disturbance. Before any maintenance, refurbishment, or demolition work, commission a professional asbestos survey of all tower components. Removal must be performed by a licensed asbestos abatement contractor experienced in industrial cooling tower decommissioning. All water in the system should be treated as potentially asbestos-contaminated and handled accordingly.
Frequently asked questions
How do cooling tower panels release asbestos fibres?
Are workers performing cooling tower maintenance at risk?
Can asbestos cooling tower panels contaminate nearby areas?
What replaces asbestos panels in cooling towers?
How much does cooling tower asbestos removal cost?
Related materials
Other asbestos-containing materials you might encounter.
Asbestos Cement Flat Sheet
Flat pressed sheets of asbestos-reinforced cement used for cladding, soffits, and interior partitions.
Asbestos Cement Pipe
Pressure and drainage pipes made from asbestos-reinforced cement, widely used for water mains and sewers.
Asbestos Cement Corrugated Sheet
Corrugated roofing and cladding sheets made with chrysotile asbestos fibres bound in Portland cement.
Asbestos Cement Downpipe
Rainwater downpipes made from asbestos cement, common on buildings constructed before the year 2000.
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