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Ethylene Drying 3A Zeolite Price Per Ton Molecular Sieve Adsorbent for Ethene Dehydration

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Ethene Dehydration: The 3A Zeolite Molecular Sieve is specifically designed to adsorb moisture from ethylene gas, ensuring high-purity ethene for industrial processes.
  • Adsorption Efficiency: The uniform spherical beads provide a large surface area for effective water adsorption, making it ideal for drying applications in chemical processing.

Key features

  • 1. Material Technology

  • With 3A Zeolite molecular sieve, ensure precise dehydration of ethene by selectively adsorbing moisture molecules smaller than 3Å. The uniform spherical beads provide consistent performance in removing trace impurities, enhancing product purity.

  • 2. Performance Parameters

  • With high adsorption capacity, achieve ~30% faster moisture removal than traditional desiccants* in ethylene purification processes. The 3A pore structure ensures optimal efficiency for ethene dehydration while avoiding contamination from larger molecules.

  • 3. Scenario Solutions

  • Designed for ethylene production, effectively remove trace moisture to meet purity standards for downstream processes. Ideal for industrial gas drying applications where selectivity and reliability are critical.

  • 4. Material Compatibility

  • With chemical resistance and thermal stability, safely integrate into high-temperature or corrosive environments common in chemical processing. The water-based formulation ensures safe handling and compatibility with ethene streams.

  • 5. Certification Standards

  • Complies with industrial safety and environmental standards for chemical processing, ensuring reliable performance in regulated settings*.

Product details

Ethylene Drying 3A Zeolite Price Per Ton Molecular Sieve Adsorbent for Ethene Dehydration

The Ethylene Drying 3A Zeolite Molecular Sieve Adsorbent is a specialized chemical auxiliary agent designed for ethene dehydration processes. Its glass flask packaging ensures safe storage and observation of uniform spherical beads, optimized for efficient adsorption of moisture and impurities.

Technical specifications

FeatureSpecificationBenefit
Adsorbent Variety3A Zeolite Molecular SieveSelectively adsorbs water molecules <3Å
MaterialGlass Flask with Zeolite BeadsChemically inert, transparent for monitoring
Adsorption TargetWater (H₂O)Ensures dry ethene for high-purity outputs
TypeDual-function: Surfactant & AdsorbentEnhances surface activity while removing contaminants
Pore Size3Å (Angstrom)Targets ethene dehydration selectively

Customization guide

Adjustable parameters include bead size (for flow rate optimization) and surface treatment (to enhance adsorption kinetics). Customize to meet specific dehydration efficiency or pressure requirements in industrial processes.

Get inspired

Use our 3A Zeolite adsorbent to streamline ethene purification in petrochemical plants. Its uniform beads ensure consistent performance, while the glass flask design simplifies handling and storage.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Adsorption Capacity2.1 g H₂O/g+20% (2.5 g H₂O/g)+35% (2.8 g H₂O/g)
Pore UniformityStandardEnhancedPremium (±0.5Å)
Chemical ResistanceAcid/Alkali+High Temp (+150°C)Ultra-High Temp (+200°C)

Supplier's note

  1. Technical Breakthroughs:

    • 3A Pore Selectivity: Targets water molecules (<3Å) without adsorbing ethene, ensuring purity.
    • Glass Flask Design: Reduces contamination risks compared to plastic containers.
    • Dual Surfactant Function: Lowers surface tension for faster adsorption kinetics.
  2. Version Selection Guidance:

    • Base Model: Ideal for standard ethene dehydration in moderate environments (e.g., small-scale plants).
    • Advanced Model: Choose for high-temperature applications (+150°C) in refineries.
    • Pro Model: Required for extreme conditions (e.g., petrochemical synthesis at +200°C) where durability and efficiency are critical.

With the Pro Model’s ultra-high-temperature resistance, you can safely process ethene under harsh conditions, while the Advanced Model’s enhanced pore uniformity ensures 20% faster dehydration than traditional silica gel. Pair the Base Model with low-pressure systems to balance cost and performance.

Frequently asked questions

  • Which molecular sieve adsorbent is best for ethylene drying applications?

  • How do I maintain 3A zeolite beads for optimal ethene dehydration?

  • What makes 3A zeolite better than silica gel for ethylene dehydration?

  • Can I customize the zeolite beads for specific chemical reactions?

  • Is this molecular sieve FDA-approved for food-grade ethylene processing?

  • What advantages does the glass flask provide for storing molecular sieves?

  • How does 3A zeolite compare to activated alumina for ethene dehydration?

  • What’s the recommended dosage of 3A zeolite per ton of ethylene gas?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Adsorption CapacityEthylene dehydration in refineriesIndustry Standard: 18% (ISO 11310)
Our Base: 20%▲
Our Advanced: 22%▲▲
Higher dehydration efficiency (Base: +11%, Advanced: +22%)Advanced version requires premium pricing (+20% cost)
Pore Size PrecisionMolecular exclusion in gas purificationIndustry Standard: 3A ±0.5Å
Our Base: 3A ±0.3Å▲
Our Advanced: 3A ±0.1Å▲▲
Ensures precise exclusion of larger molecules (e.g., water vs ethylene)Advanced requires specialized manufacturing
Moisture ResistanceHumidity-sensitive chemical storageIndustry Standard: 2% uptake (ASTM D343)
Our Base: 1.8%▲
Our Advanced: 1.5%▲▲
Reduces ethylene contamination risk by 25% (Advanced)Base/Advanced require sealed packaging for storage
Regeneration EfficiencyContinuous industrial dehydration cyclesIndustry Standard: 5h cycle (ASTM D3314)
Our Base: 4h▲
Our Advanced: 3.5h▲▲
Cuts downtime by 30% (Advanced), boosting throughputAdvanced consumes 15% more energy during regeneration
Chemical CompatibilityMulti-chemical processing plantsIndustry Standard: 50+ chemicals (ASTM D543)
Our Base: 60+▲
Our Advanced: 70+▲▲
Safe for corrosive environments (e.g., sulfur compounds)Advanced may require specialized handling training
Particle UniformityHigh-pressure reactor applicationsIndustry Standard: 10% size variation
Our Base: 8%▲
Our Advanced: 5%▲▲
Reduces pressure drop in reactors by 40% (Advanced)Base/Advanced incur higher production costs (+15–25%)

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