Industry Standard Molecular Sieve 13X | Industrial gas purification, LPG treatment | Pore size: 10Å (ISO 8579) CO₂ Adsorption: 20g/100g (ASTM D3913) Chemical resistance: ASTM F739 (30min+) | High selectivity for polar molecules (e.g., CO₂/H₂S) Standardized performance | Requires regeneration Lower adsorption capacity vs advanced variants |
Our Molecular Sieve 13X (Base Tier) | Medium-scale LPG purification, odor control | Pore size: 10Å (ISO 8579) CO₂ Adsorption: 22g/100g (▲10% over industry standard) Chemical resistance: ASTM F739 (30min+) | Enhanced adsorption capacity vs industry standard Certified (EU) 2015/863 | Moderate durability Higher cost than silica gel |
Our Molecular Sieve 13X (Advanced Tier) | High-demand industrial processes, LPG refining | Pore size: 10Å (ISO 8579) CO₂ Adsorption: 25g/100g (▲25% over industry standard) Chemical resistance: ASTM F739 (60min+) Pressure tolerance: 50psi (▲) | Superior adsorption capacity and durability Optimized for high-pressure systems | Highest cost tier Requires specialized handling |
Activated Carbon | General air purification, VOC removal | Iodine number: 1000 mg/g (ISO 11220) VOC Adsorption: 30g/100g (ASTM D3803) | Broad adsorption range (VOCs, odors) Cost-effective for non-specialized uses | Poor selectivity for CO₂/H₂S Shorter lifespan in harsh chemicals |
Silica Gel | Humidity control in packaging, low-temperature storage | Moisture adsorption: 40% RH (ASTM D1513) Non-selective adsorption | Low cost Reusable via drying | Ineffective for CO₂/H₂S removal Limited chemical resistance |
Alumina | High-temperature applications, oil removal | Temperature tolerance: 800°C (ISO 13803) Oil adsorption: 15g/100g (ASTM D3803) | Heat-resistant Effective for oil filtration | Brittle structure Not suitable for H₂S/CO₂ removal |