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What Does Far Infrared Balls Adsorb?
- Releases FIR waves (wavelength: 4–14 μm) to break down large water clusters, potentially improving absorption.
- Mineral Enrichment: Contains natural minerals (e.g., tourmaline, germanium) that may ionize water.
- Antibacterial Support: Helps inhibit bacterial growth in water systems.
Designed to emit far-infrared rays (FIR) when activated by water flow. These rays are believed to enhance water molecule activity, potentially improving hydration, promoting circulation, and offering mild antibacterial benefits.
Far infrared balls are crafted from natural infrared materials, including tourmaline, kaolin, maifan stone, and seabed minerals rich in trace elements. Manufactured using ceramic technology, these balls emit far-infrared energy with over 90% emissivity at wavelengths of 8-14 μm.
This energy is easily absorbed, breaking water into smaller molecular clusters. They also release a weak current (0.06 mA) that aligns with the biological current of organisms, offering beneficial effects. Additionally, they effectively adsorb toxic heavy metals like lead (Pb++) and chromium (Cr++), while enhancing water quality through hydrolysis, condensation, adsorption, and precipitation processes.
These balls also resonate with water molecules, increasing oxygen content and promoting mineralization.
Helps to improve water structure and bioavailability
Unlock the Power of Better Hydration with Far Infrared Balls
Far infrared balls are crafted from natural infrared materials, including tourmaline, kaolin, maifan stone, and seabed minerals rich in trace elements. Manufactured using ceramic technology, these balls emit far-infrared energy with over 90% emissivity at wavelengths of 8-14 μm.
This energy is easily absorbed, breaking water into smaller molecular clusters. They also release a weak current (0.06 mA) that aligns with the biological current of organisms, offering beneficial effects. Additionally, they effectively adsorb toxic heavy metals like lead (Pb++) and chromium (Cr++), while enhancing water quality through hydrolysis, condensation, adsorption, and precipitation processes.
These balls also resonate with water molecules, increasing oxygen content and promoting mineralization.
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