All categories Water conservation Infinite Cooling
Infinite Cooling is a pioneering company focused on optimizing industrial and commercial cooling tower efficiency. Their AI-powered platform integrates proprietary sensors and real-time analytics to monitor cooling tower operations, providing actionable insights that help industries reduce water waste, energy consumption, and emissions. One of their standout innovations, the WaterPanel™ technology, captures water from cooling tower plumes, converting lost vapor into valuable, reusable water. This solution not only conserves resources but also mitigates environmental impact by reducing hazardous emissions. Industries such as power generation, manufacturing, chiller plants, and carbon capture facilities benefit from Infinite Cooling’s technology, achieving sustainability while lowering operational costs. By enhancing cooling tower efficiency, Infinite Cooling contributes to global water conservation efforts and more sustainable industrial operations. Their solutions align with the growing demand for resource-efficient and environmentally friendly cooling technologies, making them a key player in industrial water management and energy efficiency.
Water Conservation
Sustainable water use
Sustainability
Energy Efficiency
Cooling solutions
Maher Damak
CEO
Operating since 2017
10 Members
Eco-system
Industries
Cities and Towns
Sectors
Industrial Efficiency
Reduce Energy Usage
Digital Sustainability
Climate Change Mitigation
Method and technique
Infinite Cooling has developed an innovative technology aimed at reducing water consumption in industrial cooling processes, particularly within power plants. Their system focuses on capturing water vapor from cooling tower plumes, which are typically released into the atmosphere, resulting in significant water loss. The core of their method involves placing charging electrodes at the outlet of the cooling tower, which generate ions and charge the water droplets in the plume. These charged droplets are then attracted to a specially designed collector mesh positioned atop the cooling tower. An imposed electric field facilitates the accumulation of condensed vapor droplets on this mesh. The collected water is subsequently directed to a temporary reservoir and reintroduced into the cooling system, effectively recycling the water. This approach not only conserves water but also reduces operational costs associated with water procurement and treatment. The reclaimed water is of high purity, often exceeding that of the circulating water in the cooling system, which can lead to improved system efficiency and reduced environmental impact. By implementing this technology, facilities can achieve more sustainable operations, addressing both economic and environmental challenges associated with industrial water use.
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