New Energy Industry Solutions

Solution Advantages

[01]

30% Surface Area Augmentation

High-engineered V-angle geometry that exponentially increases heat transfer area within limited land space.

[02]

Absolute Zero Water Consumption

100% dry air cooling, completely bypassing water sourcing, chemical dosing, and environmental discharge permits.

[03]

Second-Level Step-Load Response

Next-generation direct-drive EC fan arrays that modulate instantly to match sudden, intense process heat releases.

案例_0001_New Energy照片

New Energy Industry Solutions

New Energy Industry Challenges

New energy manufacturing sectors (lithium-ion battery materials, polysilicon refining, hydrogen production, and large-scale BESS) feature rapid construction cycles and high-density, compact line layouts with minimal footprint left for cooling yards. Moreover, these projects are predominantly deployed in arid, high-salinity industrial zones where poor water quality causes traditional wet cooling equipment to scale and fail prematurely under cyclical, drastic thermal surges.


CRONX (formerly CASEN) Dedicated Equipment & Solutions

CRONX (formerly CASEN) provides the ultimate answer with space-saving V-Type Air Coolers. Utilizing a highly engineered V-Angle geometric configuration, these units unlock over 30% more heat transfer surface area on the same physical footprint. Operating 100% water-free, they align perfectly with the "zero-carbon" ethos of the renewable sector, utilizing independent EC fan arrays that adjust instantly to sudden step-load thermal spikes while improving power efficiency by up to 25%.


Product Application project

08 July 2026

This project provided closed-circuit cooling towers for a core petrochemical project in Iraq's Middle East, meeting the continuous cooling requirements of large reactors and heavy oil heat exchange systems.

  • Closed-Circuit Cooling Tower
08 July 2026

Closed Circuit Cooling Tower Media: High-purity process water Quantity: 6 units Project Description counter-flow closed circuit cooling towers were installed to support the core furnace and induction heating system of a large-scale non-ferrous metal smelting project in Uzbekistan. Designed for the extremely arid and dusty climate of Central Asia, the project employed advanced fully enclosed counter-flow heat exchange technology and a highly efficient dust-proof structural design, achieving "zero-pollution" temperature control in industry while demonstrating excellent water-saving and weather-resistant performance. Recommended Standardized Case Name: Arid Region Integration: Counter-flow Closed Cooling Tower Project for Uzbekistan Metallurgical Base (Arid Region Integration: Counter-flow Closed Cooling Tower Project for Uzbekistan Metallurgical Base)

  • Closed Circuit Cooling Tower
08 July 2026

This project provided medium-high temperature open cooling towers for a mining and metallurgical heavy industry project in South Africa to treat the high-temperature return water from the blast furnace and quenching system. Addressing the local arid and water-scarce conditions, 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.

  • Open Cooling Tower
08 July 2026

Three closed circuit cooling towers were installed for a well-known industrial manufacturing project in Mexico for precise temperature control of core equipment on the production line. Addressing the local water scarcity and dusty environment, the project adopted a fully closed-loop design, achieving zero-pollution, high-efficiency operation. The overall water-saving effect exceeded the client's expectations, ensuring green and continuous production in the multinational factory.

  • Closed Circuit Cooling Tower
08 July 2026

Five high-efficiency closed-circuit cooling towers were installed to power the generator units of a key national power plant in Cambodia for precise temperature control of the core turbine auxiliary equipment and critical power equipment. Addressing the characteristics of the local climate—constantly hot and humid, prone to flooding during the rainy season, and the power plant's 24/7 high-load operation—the project employed closed-loop dual-circulation heat exchange technology and a high-grade corrosion-resistant reinforced structure, achieving zero-pollution continuous cooling and ensuring a green and stable power supply to the Cambodian power grid.

  • Closed-circuit cooling tower
08 July 2026

This project provided three square counterflow fiberglass cooling towers for a landmark commercial and cold chain project in the Philippines, offering high-flow-rate circulating water cooling services. Designed for the high-temperature, high-humidity, and high-salt-spray environment of the local tropical maritime climate, the project utilized high-strength, corrosion-resistant fiberglass material and a counterflow, high-efficiency heat transfer structure to ensure long-term stable operation of the system, demonstrating excellent corrosion resistance and energy-saving performance.

  • Counterflow Fiberglass Cooling Tower
08 July 2026

Evaporative condensers were delivered to a large-scale cold chain 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. Recommended Standardized Case Name: Safe & Highly Efficient Integration: KEG-400 Evaporative Condenser Project for Russian Ammonia Refrigeration Cold Chain

  • Evaporative Condenser