BryXchange High Temperature Recovery Wheel

Efficient Sensible Heat Recovery from Industrial Exhaust Air

BryXchange High Temperature Recovery Wheels are advanced air-to-air rotary heat exchangers designed to recover sensible heat from high-temperature exhaust air and reuse it to preheat low-temperature supply air. In many industrial processes—such as kilns, ovens, furnaces, dryers, and thermal treatment systems—a large amount of high-grade heat is discharged to the atmosphere. BryXchange captures this otherwise wasted energy and converts it into usable thermal efficiency.


With energy recovery efficiency of up to 75%, BryXchange significantly reduces fuel consumption, operating costs, and overall energy demand in high-temperature HVAC and process ventilation systems.

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How BryXchange High Temperature Wheels Work

The BryXchange rotary heat exchanger is installed between two parallel air streams:
The rotor rotates slowly between these two ducts. As hot exhaust air passes through one side of the wheel, the rotor media absorbs and stores sensible heat. As the wheel continues to rotate into the supply air stream, this stored heat is released, preheating the incoming air without mixing the two airflows.

This continuous heat transfer process delivers reliable, high-efficiency thermal recovery even in demanding industrial environments.

Design & Construction of BryXchange Rotary Heat Exchanger

The BryXchange rotor features a fluted heat transfer media manufactured from materials with high thermal conductivity and heat-carrying capacity. The rotor axis is positioned along the partition wall separating the exhaust and supply air ducts, ensuring effective and uniform heat transfer.

Key Design Features

Advantages of BryXchange High Temperature Recovery Wheels

High Efficiency, Durability & Reliability

BryXchange wheels are engineered for continuous operation in high-temperature industrial applications:

Typical Applications

Recover Valuable Heat. Reduce Energy Costs. Improve Process Efficiency

BryXchange wheels are engineered for continuous operation in high-temperature industrial applications:

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