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Ring Regenerator™ 

Kazadi's entrochemical regeneration system unlocks environmental heat from ambient air, transforming liquid desiccant air drying and dehumidification.

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How it works

How it Works

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Driven by the water cycle

We can transform environmental heat into usable energy by taking advantage of the Earth’s hydrologic cycle (water cycle).

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Spontaneous transfer of water

Our system transfers water spontaneously from a higher concentration salt solution into a lower concentrate solution, transferring the energy storage. Repeating this process in a multi-ring configuration can yield ever higher concentration salt solution.

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Energy storage

From here, we evaporate water from the lowest concentration salt solution. This stores energy thermochemically as it concentrates the salt solution. The final solution is one of very high concentration, with the thermochemical energy stored in a form suitable for absorption systems.

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Transformative liquid desiccant regeneration

Liquid dessicant air drying

Our advantage


Conventional dehumidification systems can use as much as 1.25 kWh per liter for regeneration (removing water from salt solutions). Our early projections paired with leading liquid desiccant air systems are 0.09 kWh per liter for regeneration.

Pilot programs

Improve yield, RH, disease control, and product quality while slashing energy costs. We offer paid and unpaid pilot programs in collaboration with leading manufacturers of liquid desiccant air drying and cooling systems. 

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Benefits

Reduce costs

90% reduction on energy costs from industrial drying.

Simple installation

Integrate Ring Regenerator™ system into your existing LDAS or HVAC equipment without added installation costs.
 

Improve efficiency of  climate control

Grid-independent

Driving significant efficiency improvement in your grow and processing facilities while addressing crop disease, food safety and other risks tied to humidity.

Safeguard operations and stay online even during black or brown-outs or in grid-constrained environments.

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