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S-1 All Silicon Molecular Sieve Powder Silicate-1 Zeolite Structure MFI
Silica-1M is a zeolite molecular sieve with an MFI framework structure (Silica-1 type), featuring high crystallinity, high specific surface area, and a three-dimensional intersecting channel system. As a hydrophobic pure-silica zeolite, it retains the excellent thermal and hydrothermal stability characteristic of the MFI topology. Through precise control of extra-framework cations (Na⁺), it exhibits outstanding performance in adsorption, separation, and non-acidic catalytic applications.
PRODUCT DESCRIPTION
Technical Specifications
Parameter | Typical Value |
Crystalline Phase | MFI |
Composition | SiO₂ (Si-O framework) |
Relative Crystallinity | ≥ 95% |
BET Surface Area | ≥ 350 m²/g |
Micropore Volume | ≥ 0.12 cm³/g |
Crystal Size | 1500 × 1000 × 700 nm |
Na₂O Content | < 2000 ppm |
Loss on Ignition | ≤ 2.5% |
Bulk Density | 0.4–0.6 g/cm³ |
Core Advantages
High-purity all-silica framework: Hydrophobic, acidity-free, Na₂O < 2000 ppm.
High BET surface area (>350 m²/g) for enhanced adsorption capacity.
Fine and uniform particles (D90 < 5 μm): Ensure excellent dispersion and coating uniformity in honeycomb rotor applications.
Superior stability: Thermal resistance >900 °C, excellent hydrothermal stability, low loss on ignition.
Chemically inert and non-acidic catalytic: Ideal as physical adsorbent or catalyst support to avoid side reactions.
Typical Applications
VOCs adsorption/recovery: Hydrophobic surface enables efficient adsorption of non-polar organics under high humidity.
Oil–water separation: Selective oil adsorption for wastewater treatment and fuel dehydration.
Pervaporation membranes: MFI membranes for alcohol/water and organic mixture separation.
Inert catalyst support: Suitable for selective hydrogenation/oxidation without acid/base interference.
Chromatography stationary phase: High purity and uniform particles for non-polar/weakly polar molecule analysis.
Purification of electronic chemicals: Ultra-low metal impurities for solvent purification.
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