A system that can reduce energy by 20% or more compared to conventional systems by cooling dry air after removing moisture from the air using dehumidifiers and by 40% or more when combined with heat pumps.
Installation in locations requiring dehumidification | - Swimming pools, ice rinks, special factory, etc. |
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Latent Heat Load Treatment with Desiccant | |
Complementation of disadvantages of cooling dehumidification method | |
Enable efficient energe use of use | - Energy savings of 20% or more compared to existing systems |
Improving indoor air quality through outdoor air intake |
low temperature regenerative dehumidification rotor below 70°C | Due to the low regenerative temperature, not only electric heat sources but also various types of heat sources such as district heating heat, solar energy, and industrial waste heat can be used to reduce energy costs for regeneration. |
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Excellent Absorption Performance | Better absorption performance than silica gel dehumidification rotor in low temperature regenerative conditions |
It is possible small weight lightening | High absorption performance and low-density high-molecular materials enable small weight lightening |
Stable repeatability and durability | Stable performance in repetitive cycles of absorption/rehabilitation Use 60,000 times or more 5% of the performance load |
eco-friendly manufacturing method | No environmental burden by developing and applying independent manufacturing technology of eco-friendly manufacturing methods |
special factory
Swimming pools
ice rinks