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Advanced Self-Regenerating Moisture-Absorbing Materials
66 2024. 4. 5.Summary
Currently, moisture absorbing materials in home appliances have limited efficiency. As a result, appliances do not operate optimally with inadequate moisture removal at higher energy consumption. In laundry dryers, degradation of fabric material may occur; whereas in the case of air conditioners and air purifiers, room occupants experience discomfort.
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Description
The prevailing moisture-absorbing materials employed in laundry dryers exhibit suboptimal efficiency, necessitating high temperatures for regeneration and displaying limited moisture retention capacity. Consequently, extended drying cycles ensue, with residual dampness in fabrics, accompanied by heightened energy usage and potential fabric deterioration. There is a need to address user pain points by expediting drying processes, particularly amidst humid conditions, within a timeframe of approximately 3 hours.
The development of advanced moisture-absorbing materials characterized by low-resolution energy consumption and enhanced moisture retention capabilities is crucial. From our experience, during seasonal weather changes, the dehumidification function in air conditioning systems falls when relative humidity is at 70%.
Ideally, we are seeking self-regenerating moisture-absorbing materials that can effectively turn saturated water vapor into liquid form post-absorption. The use of such materials should bring about accelerated drying, reduced energy consumption, and reduced fabric damage, thereby enhancing the overall efficiency and utility of the appliance.
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