Cooling water program providers, chemistry, side-stream filtration, Legionella control, and remote monitoring.

    Find a Cooling Tower Water Treatment Provider

    Matched providers: 22

    Top countries: United States, Netherlands

    Popular technologies: Cartridge Filters, Filtration

    Legionella Control, Scale Management, and Efficiency in Cooling Tower Systems

    Cooling towers are the highest-risk component in building water systems from a Legionella pneumophila standpoint. Warm water (25–45°C), aerosolization of drift, and nutrient-rich biofilms in inadequately treated towers create conditions where Legionella can multiply to infectious concentrations in days. Effective control requires a multi-barrier approach: maintaining measurable disinfectant residual (typically 1–3 mg/L free chlorine or equivalent biocide), controlling drift with high-efficiency eliminators rated to below 0.0005% drift rate, and conducting regular mechanical cleaning and basin sedimentation removal. Hyperchlorination shock treatment is used as a corrective action when culture results exceed regulatory action thresholds.

    Scaling and corrosion management in cooling towers runs concurrently with Legionella control but requires separate chemical programs. Blowdown controlled by cycles of concentration keeps dissolved mineral concentrations below scaling thresholds; the target COC is set by LSI calculations for your makeup water. Corrosion inhibitors protect the tower fill, basin, and heat exchanger circuits simultaneously. Biodispersants are increasingly specified alongside biocides because biofilm—not just planktonic bacteria—is the primary reservoir for Legionella and the primary cause of underdeposit corrosion.

    When procuring cooling tower water treatment services, evaluate the provider's Legionella sampling and reporting protocol as carefully as their chemical program. Providers should be able to deliver culture results within 7–10 days of sampling, have documented escalation procedures for positive results above action levels, and carry adequate liability insurance. Confirm they will prepare and update the ASHRAE 188 Water Management Plan documentation and support any regulatory inspections.

    Frequently Asked Questions

    How do I know if my cooling tower has a Legionella risk?

    All cooling towers that recirculate warm water and produce aerosol carry some Legionella risk. Risk is elevated when water temperatures are consistently in the 25–45°C range, when the tower has low-flow or stagnant zones, when biofilm is visible in the basin or fill, or when the disinfectant residual is inconsistently maintained. ASHRAE 188 provides a formal Hazard Analysis and Critical Control Point (HACCP)-based framework for assessing and documenting your specific risk profile—any qualified treatment provider should be able to conduct this assessment.

    What biocides are most effective for cooling tower Legionella control?

    Oxidizing biocides—chlorine (sodium hypochlorite), bromine (BCDMH), and chlorine dioxide—are the primary Legionella control agents and must be maintained at measurable residuals continuously, not just during shock dosing. Non-oxidizing biocides (isothiazolones, quaternary ammonium compounds) are rotated in to prevent resistance and to penetrate biofilm where oxidizers alone have limited efficacy. An alternating or combined oxidizer/non-oxidizer program with documented residual monitoring is more defensible from a regulatory standpoint than either biocide class used alone.

    What cycles of concentration should I run my cooling tower at?

    Optimal COC balances water savings against scaling and corrosion risk. Most municipal makeup water sources support COC targets of 4–6 cycles, reducing water consumption by 20–25% compared to running at 3 cycles. Higher COC is possible with softer or treated makeup water and appropriate antiscalant programs. Your provider should calculate the maximum allowable COC based on LSI and Ryznar Stability Index analysis of your makeup water, then design a blowdown control program—ideally automated by conductivity meter—to maintain that target.

    What documentation should my cooling tower treatment provider supply?

    At minimum, expect monthly service reports with trend data for pH, conductivity, biocide residual, inhibitor residual, and make-up/blowdown volumes. Quarterly Legionella culture results should be provided with laboratory chain of custody documentation. The provider should also maintain and annually update your Water Safety Plan under HSE ACOP L8, system flow diagrams, and corrective action log. Facilities with cooling towers must notify their local authority under the Notification of Cooling Towers and Evaporative Condensers Regulations 1992, and your provider should support this obligation.

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    Cooling Tower Water Treatment Companies

    Cooling water program providers, chemistry, side-stream filtration, Legionella control, and remote monitoring.

    7 specialist providers · 15 related · 8 countries

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    Specialists in cooling tower water treatment

    Providers whose services or self-declared specialties match this category.

    Hangzhou Realize Technology Co., LTD.

    Verified

    China · 1-50 employees · 1 case study

    HANGZHOU REALIZE TECHNOLOGY CO., LTD. is a technology enterprise. The company collaborates with domestic and international universities such as Beijing University of Technology, Tsinghua University, and Berlin University of Technology to address the challenges of enhancing anaerobic efficiency and nitrogen removal in high-ammonia nitrogen wastewater. The core technologies foucs on energy-saving denitrification and enhanced green methane production. These two technologies can increase production efficiency of green methane by 20% and reduce costs of wastewater denitrification by 60%.

    Process Water TreatmentWastewater TreatmentAdvanced Treatment Technologies

    Hainan Litree Water Purification Technology Industry Co., Ltd.

    Verified

    China · 200+ employees

    Litree: Pioneering Ultrafiltration for a Water-Secure World Founded in 1992, Litree has dedicated 30+ years to redefining water purification through ultrafiltration (UF) membrane technology—our core expertise and passion立升(Litree). As a global high-tech enterprise rooted in independent innovation, we’ve evolved from a membrane R&D startup to one of the world’s leading water problem solvers, with over 146 core patents and state-of-the-art manufacturing hubs in Haikou and Suzhou, China立升(Litree). Our signature hollow fiber UF membranes are engineered to deliver unmatched performance: 0.01μm precision removes 99.99% of bacteria, viruses, and contaminants while preserving essential minerals—striking the perfect balance between purity and health立升(Litree). This technology powers our diverse solutions, from residential whole-house systems to large-scale municipal projects and industrial wastewater treatment, all designed for sustainability and cost-efficiency. What truly sets us apart is our commitment to making safe water accessible. We’ve completed projects serving 50,000+ residents with centralized purification systems that cut construction costs and footprint by 50% compared to traditional setups—proof that advanced technology can also be affordable. Today, our solutions reach 60+ countries, supporting 3,000+ industrial clients and millions of households worldwide. At Litree, water isn’t just our business—it’s our mission. We believe every drop matters, and we’ll keep pushing boundaries to create a future where clean, safe water is a universal right, not a privilege

    Ultrafiltration (UF) SystemsMembrane Filtration TechnologiespH Adjustment and Neutralization

    Sidonwater S.L.

    Verified

    Spain · 1-50 employees · 5 case studies · 3 datasheets

    Sidon Water is a water technology company specialised in non-chemical water treatment and system optimisation. We develop and deploy advanced solutions that prevent and remove limescale, reduce fouling and corrosion, and improve the performance of cooling towers, industrial water systems, and reverse osmosis and desalination installations. Sidon Water works with industrial clients, commercial building owners, OEMs and EPC partners to deliver measurable improvements in energy efficiency, operational reliability and asset lifetime. Our activities cover the full cycle from analysis and pilot projects to system integration, commissioning and long-term performance optimisation.

    Electrochemical TechnologiesProcess Water TreatmentWastewater Treatment

    Gi Aqua , Water as a Service

    Verified

    Saudi Arabia · 51-200 employees

    GI WAAS delivers cutting-edge water and wastewater solutions using advanced nanotechnology and zero total discharge solution sets industry standards. Our mission is to provide smart, sustainable, and decentralized treatment systems. We are committed to circular economy principles and reducing environmental impact. Our holistic approach provides comprehensive, tailor-made solutions that are designed to meet the specific needs of each client

    Water-as-a-Service (WaaS) ContractsPublic-Private Partnerships (PPPs)Technology Leasing and Rental Solutions

    Ecosystems International

    Verified

    Indonesia · 51-200 employees

    PT Ecosystems International (PT ESI) was established at Jakarta on 21st November 2006. We are an industrial effluent treatment systems integrator specializing in electrocoagulation (EC), a unique waste water treatment profile. PT ESI has capabilities in designing complete waste water treatment solutions by combining various effluent treatment systems such as the electro-coagulation, biological, chemical processes and membrane filtration, offering its customers a wide and comprehensive range of solutions, tailored to suit their various needs – ranging from basic effluent treatment for discharge to effluent recycling for water reuse. The Company is experienced in handling the design, engineering, procurement, construction and operation of new Effluent Treatment Plants (“ETP”) and possesses expertise in retrofitting existing ETP to increase the flow rate and treatment capability without any major infrastructure increase PT ESI is also a premier waste water treatment service company specializing in handling waste water generated from Exploration (Drilling) and Produced Water. Customers in Indonesia include major Oil & Gas companies such as Pertamina, Exxon, Chevron, Petro-China and Medco. Operations in Indonesia are provided by both mobile and fixed units. At drill sites where waste-water recycling is required, PT ESI supplement these treatment units with skid mounted mobile Reverse Osmosis systems. The technologies and solutions employed by PT ESI are developed in-house and examples of these are its proprietary Trident™ Electro Contaminant Removal (“ECR”) system, the Stage Contaminant Removal (“SCR”) process and Mobile On-Site Waste-Water Treatment (“OWT”) units

    Reverse Osmosis (RO) SystemsUltrafiltration (UF) SystemsMulti-media Filtration (MMF) Systems

    Brine Consulting

    Verified

    Netherlands · 1-50 employees

    BRINE CONSULTING delivers senior-level strategy, technical design, and actionable insight across the full lifecycle of water-related challenges. We support clients with advisory and due diligence, advanced brine management and resource recovery, industrial and municipal water reuse, and MLD/ZLD systems. Our team also leads ESG and climate-resilience strategy, innovation scouting, and international development and PPP advisory. With deep specialization in desalination, brine valorization, circular economy models, and high-impact infrastructure, we help organizations turn water and waste streams into opportunities, providing clear thinking, rapid delivery, and solutions built for real-world results.

    Activated Carbon FiltrationReverse Osmosis (RO) SystemsUltrafiltration (UF) Systems

    Seven Seas Water Group

    United States

    Seven Seas Water Group is a fully integrated water and wastewater solutions provider specializing in Water-as-a-Service delivery. The company designs, builds, finances, and operates treatment facilities for municipal, commercial, and industrial clients globally. Their offerings address water scarcity through desalination and sustainable water reuse technologies.

    Water-as-a-Service (WaaS)Lease Plant ProgramWater treatment design and operations

    Related providers

    Listed for overlapping capabilities, not for cooling tower water treatment specifically.

    Genesis Water Technologies

    United States

    Genesis Water Technologies, headquartered in Maitland, Florida, designs modular water and wastewater treatment systems plus specialty media and flocculants for industrial clients. The firm addresses silica removal, cooling tower cycles of concentration, scale and corrosion control, and water recycling for data centers and manufacturers. Named offerings include the Zeoturb bio-organic flocculant, GCAT catalytic membrane protection, and Genclean cooling tower tablets, backed by engineering process optimization consulting.

    Modular treatment systemsProcess optimization consultingTreatment media supply
    C

    ChemTreat

    United States

    ChemTreat is one of the largest industrial water treatment companies in the United States, headquartered in Richmond, Virginia. It designs custom chemical treatment programs for boiler water, cooling water, pretreatment, wastewater and water reuse, combining field technical support, laboratory services and digital monitoring to improve efficiency and protect equipment across many industries.

    Boiler water treatmentCooling water treatmentPretreatment and filtration

    Kurita America

    United States

    Kurita America provides industrial water treatment solutions including chemicals, equipment, engineering, and services. As part of the global Kurita Group, the company delivers customized approaches to address complex water management challenges across diverse industries while promoting sustainability.

    Water treatment chemical solutionsEquipment supply and installationEngineering and consulting services

    Advantage Controls, LLC

    United States · 51-200 employees

    Cooling Tower, Boiler, Chiller, Reverse Osmosis, Wastewater quality control equipment, chemical metering pumps, filtration, valves, probes

    Reverse Osmosis (RO)Online/Real-Time Monitoring

    AQ Group

    Netherlands

    We take care of cooling towers: water treatment (also chemical free), cleaning, maintenance and legionella control. We also do legionella risk control of drinking water systems and subsequent technical adjustments. Furthermore we are specialized in the delivery and maintenance of water softeners, reversed osmosis, demiwater and humidification installations.

    Reverse Osmosis (RO)Ion ExchangeChemical Softening
    AC

    Advanced Chemical Systems

    United States

    Advanced Chemical Systems, Inc. (ACS) is a water and wastewater treatment company headquartered in Franklin, Wisconsin. Founded in 1977, ACS provides custom chemical and equipment solutions for industrial wastewater treatment across a wide range of facilities and applications, including boilers, cooling towers, plating, parts washing, and machining processes. The company combines treatment chemistry with equipment, water sample analysis, compliance consulting, and staff training to help industrial sites meet discharge and process water quality requirements.

    Industrial wastewater treatment solutionsBoiler and cooling water treatmentWater sample analysis and monitoring

    Abalco®

    Netherlands · 200+ employees

    Abalco® specializes in chemical and technical cleaning, renovation and conservation of heating, air-conditioning and cooling installations. Our specialists mainly focus on the technical management, preventive and corrective maintenance of installations. You can also contact us for water treatment and legionella management of evaporative condensers and cooling towers. Our SR-CT water treatment method based on electrolysis

    Coagulation/FlocculationIon ExchangeChlorination

    Chem-Aqua

    United States

    Chem-Aqua is an industrial water treatment company providing customized programs for boilers, cooling systems, and process water across more than 55 countries. The company designs bespoke treatment programs that aim to reduce water, energy, and maintenance costs while protecting system reliability and safety. Its work spans steam boiler and closed-loop treatment, cooling tower and chiller treatment, Legionella risk management, and microbiological and biofilm control. Chem-Aqua is the water treatment division of NCH Corporation, headquartered in Irving, Texas, and now operates as part of Solenis following acquisition. The company reports over 34,000 implemented programs and more than 1,600 water treatment team members worldwide.

    Steam boiler and closed-loop water treatmentCooling tower and chiller water treatmentLegionella risk management

    Chardon Labs

    United States

    Chardon Labs is a commercial and industrial water treatment service provider headquartered at 7300 Tussing Road in Reynoldsburg, Ohio. Founded in 1965, the company delivers customized treatment programs for cooling towers, boilers, and closed-loop systems, addressing scale, corrosion, biological growth including Legionella, and mineral content. Services include water testing, chemical application, system cleaning and flushing, filtration, and Legionella testing and control. Chardon Labs is ISO 9001:2015 certified and offers ASSE 12080 Legionella certification, serving customers across roughly 13 states in the eastern and midwestern United States.

    Boiler water treatmentCooling tower water treatmentClosed-loop water treatment

    Watch Water

    Germany

    Watch Water is a Mannheim, Germany based manufacturer of water and wastewater treatment media with more than 45 years of experience and over 45 branches worldwide. The company produces scale prevention media, adsorbents, filter media, and instant dosing chemicals for drinking water, food and beverage, boilers, cooling towers, wastewater, and reuse. Its products remove iron, manganese, hydrogen sulfide, heavy metals, and turbidity.

    Manufacture of filter and scale prevention mediaAdsorbent and activated carbon supplyInstant dosing chemical solutions
    S

    Solenis

    United States

    Solenis is a United States global producer of specialty chemicals and water treatment solutions for water-intensive industries. It delivers cooling and boiler water programs, coagulants and flocculants, corrosion and scale inhibitors, microbiological control and digital monitoring, helping industrial and municipal operators improve efficiency, protect assets and meet environmental goals.

    Industrial water treatment chemicalsCooling tower treatmentBoiler water treatment
    C

    ChemREADY

    United States

    ChemREADY is a water and wastewater treatment company headquartered in Twinsburg, Ohio, providing integrated solutions that combine treatment chemistry, equipment, field services, and remote monitoring. The company serves industrial and commercial clients with cooling tower, boiler, and closed-loop water treatment, Legionella risk management and disinfection, industrial wastewater treatment, and dewatering and solids management. ChemREADY emphasizes system reliability and regulatory compliance, supplying ultra-concentrated chemical formulations, filter presses, and digital controllers for phosphorus removal, odor control, and water safety management.

    Cooling tower, boiler, and closed-loop water treatmentLegionella risk assessment, testing, and disinfectionIndustrial wastewater treatment and monitoring
    S

    Sorbster

    United States

    Sorbster specializes in industrial wastewater treatment, manufacturing adsorbent media to remove contaminants from water used in boilers, cooling towers, and other industrial applications. Its product range targets silica, selenium, mercury, copper, and multiple heavy metals, achieving removal rates up to 99 percent. Based in Cleveland, Ohio, the company supports customers with water diagnostics, pilot treatment programs, temporary treatment options, and pump-and-treat applications using standard industry tanks and cartridges.

    Water diagnostics and testingPilot treatment programsTemporary and emergency treatment options
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    Buyer's guide

    The buyer's guide to cooling tower water treatment

    OverviewFAQCase studyQuestions to askCost driversRegulations

    Legionella Control, Scale Management, and Efficiency in Cooling Tower Systems

    Cooling towers are the highest-risk component in building water systems from a Legionella pneumophila standpoint. Warm water (25–45°C), aerosolization of drift, and nutrient-rich biofilms in inadequately treated towers create conditions where Legionella can multiply to infectious concentrations in days. Effective control requires a multi-barrier approach: maintaining measurable disinfectant residual (typically 1–3 mg/L free chlorine or equivalent biocide), controlling drift with high-efficiency eliminators rated to below 0.0005% drift rate, and conducting regular mechanical cleaning and basin sedimentation removal. Hyperchlorination shock treatment is used as a corrective action when culture results exceed regulatory action thresholds.

    Scaling and corrosion management in cooling towers runs concurrently with Legionella control but requires separate chemical programs. Blowdown controlled by cycles of concentration keeps dissolved mineral concentrations below scaling thresholds; the target COC is set by LSI calculations for your makeup water. Corrosion inhibitors protect the tower fill, basin, and heat exchanger circuits simultaneously. Biodispersants are increasingly specified alongside biocides because biofilm—not just planktonic bacteria—is the primary reservoir for Legionella and the primary cause of underdeposit corrosion.

    When procuring cooling tower water treatment services, evaluate the provider's Legionella sampling and reporting protocol as carefully as their chemical program. Providers should be able to deliver culture results within 7–10 days of sampling, have documented escalation procedures for positive results above action levels, and carry adequate liability insurance. Confirm they will prepare and update the ASHRAE 188 Water Management Plan documentation and support any regulatory inspections.

    Post your cooling tower water treatment project

    Frequently asked questions

    How do I know if my cooling tower has a Legionella risk?

    All cooling towers that recirculate warm water and produce aerosol carry some Legionella risk. Risk is elevated when water temperatures are consistently in the 25–45°C range, when the tower has low-flow or stagnant zones, when biofilm is visible in the basin or fill, or when the disinfectant residual is inconsistently maintained. ASHRAE 188 provides a formal Hazard Analysis and Critical Control Point (HACCP)-based framework for assessing and documenting your specific risk profile—any qualified treatment provider should be able to conduct this assessment.

    What biocides are most effective for cooling tower Legionella control?

    Oxidizing biocides—chlorine (sodium hypochlorite), bromine (BCDMH), and chlorine dioxide—are the primary Legionella control agents and must be maintained at measurable residuals continuously, not just during shock dosing. Non-oxidizing biocides (isothiazolones, quaternary ammonium compounds) are rotated in to prevent resistance and to penetrate biofilm where oxidizers alone have limited efficacy. An alternating or combined oxidizer/non-oxidizer program with documented residual monitoring is more defensible from a regulatory standpoint than either biocide class used alone.

    What cycles of concentration should I run my cooling tower at?

    Optimal COC balances water savings against scaling and corrosion risk. Most municipal makeup water sources support COC targets of 4–6 cycles, reducing water consumption by 20–25% compared to running at 3 cycles. Higher COC is possible with softer or treated makeup water and appropriate antiscalant programs. Your provider should calculate the maximum allowable COC based on LSI and Ryznar Stability Index analysis of your makeup water, then design a blowdown control program—ideally automated by conductivity meter—to maintain that target.

    What documentation should my cooling tower treatment provider supply?

    At minimum, expect monthly service reports with trend data for pH, conductivity, biocide residual, inhibitor residual, and make-up/blowdown volumes. Quarterly Legionella culture results should be provided with laboratory chain of custody documentation. The provider should also maintain and annually update your Water Safety Plan under HSE ACOP L8, system flow diagrams, and corrective action log. Facilities with cooling towers must notify their local authority under the Notification of Cooling Towers and Evaporative Condensers Regulations 1992, and your provider should support this obligation.

    Case study · University campus estate, Midlands, UK

    Challenge
    A university with 14 separate cooling towers across its campus estate had no centralised water management program. Legionella culture results from a routine audit found results above 1,000 CFU/L in two towers, triggering an HSE investigation and emergency shutdown of associated HVAC plant during the exam period.
    Approach
    A campus-wide Legionella risk assessment was completed across all towers within 48 hours of the positive results. Emergency hyperchlorination was carried out on the affected towers while a permanent managed treatment program covering automated oxidising biocide dosing, conductivity-controlled blowdown, and monthly site visits was rolled out across all 14 towers.
    Outcome
    All towers returned negative Legionella culture results within 6 weeks of treatment program implementation. A centralised monitoring dashboard enabled the estates team to view real-time conductivity, biocide residual, and pH for all towers from a single interface. No further positive results were recorded over the subsequent 24-month monitoring period.

    Questions to ask shortlisted providers

    5
    1. 01

      Is your cooling tower risk assessment methodology compliant with BS 8580-1:2019 and HSE ACOP L8, and will it be completed by a competent person as defined under L8?

      An L8-compliant risk assessment is the legal baseline for Legionella management; one that does not meet this standard provides no regulatory protection.

    2. 02

      What is your guaranteed Legionella culture result turnaround time, and which UKAS-accredited laboratory do you use?

      Faster turnaround enables earlier corrective action if a positive is found; UKAS accreditation makes the result defensible to regulators.

    3. 03

      How do you demonstrate continuous biocide residual between service visits, and do you offer remote online monitoring?

      Legionella can multiply to dangerous levels in 3 to 5 days; biocide residual must be maintained continuously, not just at monthly service visits.

    4. 04

      What is your escalation procedure if Legionella culture results exceed 1,000 CFU/L or 10,000 CFU/L action levels, and what are your response time commitments?

      HSE guidance sets defined action levels requiring specific responses; a provider without a written escalation procedure is not prepared to protect your site.

    5. 05

      Do you carry out physical cleaning and inspection of the tower fill, basin, and drift eliminators as part of the service, and at what frequency?

      Biofilm and sediment accumulation in the basin and fill are primary Legionella reservoirs; chemical treatment alone without physical cleaning is insufficient.

    What drives cost in this category

    4
    Number of cooling towers on site
    Each tower requires individual risk assessment, dosing equipment, monthly service visits, and Legionella sampling, so total program cost scales almost linearly with tower count.
    Makeup water quality and cycles of concentration target
    Hard makeup water at low COC requires higher blowdown rates and more frequent chemical replenishment, increasing water, chemical, and drain disposal costs.
    Biocide program complexity
    Towers in high-risk environments or with poor historical Legionella records may require alternating biocide programs with additional non-oxidising treatments, increasing chemical spend per tower.
    Physical cleaning frequency
    Annual full tower cleans including fill inspection and basin de-sludging are typically GBP 800 to GBP 3,000 per tower depending on size and access; more frequent cleans are required for towers with high organic load or poor results history.

    Key regulations and standards

    4
    HSE ACOP L8 (4th edition)
    Defines the legal duty of care for Legionella control in cooling towers, requiring written risk assessments, water management plans, and documented corrective action procedures.
    Notification of Cooling Towers Regulations 1992
    Requires all cooling towers and evaporative condensers in England and Wales to be registered with the local authority, including location and responsible person details.
    BS 8580-1:2019
    Specifies the requirements for Legionella risk assessments in water systems, defining what a compliant assessment must include and who is competent to carry it out.
    BS 8552:2012
    Covers sampling and analysis of water in cooling systems for Legionella and other microbiological parameters, ensuring monitoring results are methodologically valid.

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