The DLT Series Molded Round FRP Cooling Tower is a modular cooling solution designed for consistent thermal performance and standardized industrial applications. Precision-molded FRP components ensure uniform quality, durability, and reliable operation across a wide range of cooling duties.
Cooling Tower Systems
Efficient and reliable cooling tower solutions designed for industrial heat dissipation, energy saving, and stable
long-term operation across various applications
The KKH Series Crossflow Cooling Tower utilizes a crossflow heat exchange design that combines low noise operation, reduced pumping requirements, and easy maintenance access. It is particularly suitable for commercial and urban cooling applications.
The FMT Series Counterflow FRP Cooling Tower combines high thermal efficiency with a compact footprint. It is designed for industrial and commercial applications requiring reliable cooling performance and efficient use of installation space.
The XWKKBL Series Plume Abatement Cooling Tower is designed to reduce visible plume emissions during cold-weather operation while maintaining efficient cooling performance and water conservation.
The KFCN Series Hybrid Closed Circuit Cooling Tower combines the benefits of dry cooling and evaporative cooling in a single high-efficiency system. Through a finned pre-cooling heat exchanger located above the evaporative section, process fluid is partially cooled before entering the wet cooling stage.
The KCN Series Counterflow Closed Circuit Cooling Tower removes process heat through evaporative cooling. Heat from the process fluid circulating inside the coil is transferred to the external spray water, while an induced-draft fan discharges heat to the atmosphere through evaporation.
The KCH Series Parallel Flow Closed Circuit Cooling Tower is designed to remove process heat through evaporative cooling, combining spray water, airflow, and heat exchange coils to deliver highly efficient thermal performance.
The KCF Series Crossflow Closed Circuit Cooling Tower is engineered for efficient process cooling through evaporative heat rejection. Heat from the process fluid circulating inside the coil is transferred to the spray water and ultimately discharged to the atmosphere by the fan system.
The KWN/H Series Wastewater Closed Circuit Cooling Tower is purpose-built for cooling highly contaminated, solids-bearing, viscous, or fouling-prone process fluids. Unlike conventional cooling towers, it incorporates mechanically cleanable header boxes and straight-tube heat exchanger technology, allowing direct physical cleaning of heat transfer surfaces.
Product Application Project
Five high-specification industrial air coolers were provided for a petrochemical energy project in a Central Asian country, using 45% ethylene glycol as the cooling medium. The project addressed the extremely cold and water-scarce environment of Central Asia by employing a fully dry air-cooled heat exchange technology, achieving zero water consumption operation and completely eliminating the risk of pipeline freezing and cracking in winter, ensuring the continuous and safe operation of this national-level energy corridor.
- Air Cooler
Four closed-circuit cooling towers were installed for a petrochemical project in the Middle East to meet the continuous cooling needs of large reactors and heavy oil heat exchange systems. Addressing the harsh conditions of the Middle Eastern desert region, including extreme summer temperatures, strong ultraviolet radiation, frequent sandstorms, and severe water scarcity, the project employed fully enclosed circulating heat exchange technology and a robust wind and sand protection design, achieving high-precision temperature control and extreme water conservation, ensuring the safe and stable production of the energy production line. Recommended Standardized Case Study: Integrated Delivery of 4 KCH-365A Closed-Circuit Cooling Towers with High Weather Resistance in Extreme Desert Environments of the Middle East
- Closed-Circuit Cooling Tower
Medium-high temperature open cooling towers were installed for a mining and metallurgical heavy industry project in Africa to treat the high-temperature return water from the blast furnace and quenching system. Addressing the specific conditions of local drought and water scarcity, high summer heat loads, and extremely high inlet water temperatures, the project utilized high-temperature resistant special fillers and a high-strength, corrosion-resistant fiberglass structure to achieve stable heat dissipation with large temperature differences and high efficiency, effectively ensuring the continuous and safe operation of the heavy industrial production line.
- Fiberglass Open Cooling Tower
Provide three FMT-500 square counterflow fiberglass cooling towers for a commercial and cold chain project in a Southeast Asian country to provide large-flow circulating water cooling services. In response to the high temperature, high humidity, and high salt spray environment of the local climate, the project uses high-strength anti-corrosion fiberglass materials and a counter-flow efficient heat transfer structure to ensure long-term stable operation of the system and demonstrate excellent corrosion resistance and energy-saving performance.
- Counterflow fiberglass cooling tower
Two KEG-400 evaporative condensers were supplied to a food processing project in Russia for the cooling and liquefaction of high-pressure R717 (ammonia) gas. The project overcame the challenge of winter freeze protection in the extremely cold climate, ensuring the green, safe, and stable operation of the large-scale ammonia refrigeration system thanks to its excellent airtightness, corrosion resistance, and high heat exchange efficiency.
- Evaporative Condenser
Why Global Clients Choose CRONX
CRONX combines advanced manufacturing, customized engineering solutions, and extensive international project experience to
deliver efficient and reliable industrial cooling systems worldwide
Energy & Water Efficiency
High-efficiency heat exchange technology, permanent magnet direct-drive systems, intelligent variable-speed control, and optimized water management reduce energy consumption, minimize water loss, and lower lifetime operating costs.
Built for Reliability
Corrosion-resistant materials, heavy-duty construction, and application-specific designs ensure dependable operation in harsh environments, from -35°C to +45°C, including high-temperature, corrosive, and water-scarce conditions.
Easy to Maintain
Modular construction, simplified mechanical systems, and optional IoT monitoring reduce maintenance requirements, improve equipment availability, and support predictive maintenance.
Complete Cooling Solutions
From open cooling towers to closed circuit cooling towers, CRONX offers standard and custom-engineered solutions tailored to your process, climate, water quality, and site conditions. From system selection and manufacturing to installation and lifecycle support, we provide complete cooling solutions designed for long-term performance.
Get Customized Cooling Systems
Contact CRONX today for product inquiries, technical consultation, and tailored industrial cooling
solutions designed for your project requirements
Trusted By Industrial Clients Worldwide
Cronx Has Earned The Trust Of Global Customers Through Reliable Cooling Solutions, Professional Engineering
Support, And Stable Product Performance
Carlos Mendez
Tough, durable equipment. We deployed these industrial cooling towers at a high-altitude mining site, and their thermal rejection capacity remains consistent and highly reliable.
Alistair Brown
The OEM standards on these cooling towers are impressive. Structural calculations matched our strict European guidelines perfectly, and the pricing offered a huge ROI compared to local alternatives.
Robert Chen
We sourced multiple heavy-duty cooling tower systems for our manufacturing plant's cleanroom HVAC. The thermal stability is perfect, and the drift eliminators work exceptionally well to prevent local water wasting.
FAQ
Find Answers To Common Questions About Cronx Products, Customization, Delivery,
Installation, And Technical Support Services
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Q1: Why can’t the cooling tower lower the outlet water temperature?
A: Common causes include fouled or clogged fill media that reduces heat exchange efficiency, insufficient or reversed fan airflow, excessive circulating water flow exceeding the tower’s rated capacity, ambient wet-bulb temperature beyond design conditions, and uneven water distribution across the fill.
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Q2: How to control algae and scale buildup in cooling towers?
A: Regularly add corrosion and scale inhibitors to prevent scaling, along with biocides to eliminate microbes. Clean sludge from fill media and water basins monthly. Install side-stream filters to reduce suspended solids if possible, and shield water tanks from direct sunlight to slow algae growth.
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Q3: What solutions are available for excessive cooling tower operating noise?
A: Noise mainly comes from fans, motors, falling water and tower resonance. Inspect fan blades for imbalance and worn bearings; install shock-absorbing pads for motors and tower bases; adjust water valves to reduce water impact; or add sound barriers for noise reduction.
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Q4: What leads to high water consumption of cooling tower circulating water?
A: Normal water loss comes from evaporation, drift and blowdown. Abnormally high consumption is usually caused by damaged drift eliminators with excessive water drift, leaking pipes/tanks/valves, open blowdown valves, or faulty float valves causing continuous overflow.
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Q5: How to prevent cooling tower freezing in cold winter conditions?
A: Wrap water pipes and basins with electric heat tracing; equip a small anti-freeze circulation loop to maintain low continuous water flow; drain all water from the tower and pipelines during shutdown; install temperature-controlled fans to reduce airflow in cold weather; and add thermal insulation layers for water tanks.