Customization: | Available |
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After-sales Service: | Yes |
Warranty: | 1 Year |
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• Preventing Internal Condensation: The Molecular Sieve Desiccant in insulating glass is used to adsorb moisture within the sealed space, effectively preventing internal condensation during temperature variations and improving visual clarity.
• Enhancing Thermal Insulation: The use of Molecular Sieve Desiccant helps reduce moisture content in the insulating glass, decreasing the gas conduction coefficient and thereby improving the thermal insulation performance.
• Extending Product Lifespan: Adsorbing moisture with Molecular Sieve Desiccant slows down the oxidation of metal spacers within insulating glass, leading to an extended lifespan, especially in harsh environmental conditions.
• Molecular Sieve Desiccant in insulating glass contributes to maintaining stability within the air space, enhancing sound insulation properties and reducing the transmission of external noise.
High Adsorption Capacity: Molecular Sieve Desiccant exhibits a high adsorption capacity for moisture, effectively capturing and retaining water molecules within the insulating glass unit.
Selective Adsorption: It has a selective adsorption property, preferentially adsorbing water molecules while allowing other gases to pass through, contributing to enhanced moisture removal.
Thermal Stability: Molecular Sieve Desiccant maintains stability at various temperatures, ensuring reliable performance in both hot and cold climates.
Chemical Inertness: It is chemically inert, preventing any reactions with components of the insulating glass and ensuring long-term stability and effectiveness.
Non-Toxic and Safe: Molecular Sieve Desiccant is non-toxic and safe for use in insulating glass, meeting safety standards and regulations for building materials.
Particle diameter(mm)
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1.5-2.0
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water adsorption(50%RH25ºC)
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≥20%Wt
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Ammonia adsorption capacity(Latm/25ºC)
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≤0.2%Wt
|
Bulk density
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≥0.72g/ml
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Compressive strength
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≥20N/piece
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Adsorption temperature rise(20ml/20ml)
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≥30ºC
|
Dust amount
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≤30PPM
|
Particle size pass rate
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98%
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Wear rate
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≤0.2%Wt
|
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