All categories
Featured selections
Trade Assurance
Buyer Central
Help Center
Get the app
Become a supplier
  • Ceramic Tower Random Packing 50mm Ceramic Pall Ring Distillation Column
  • Ceramic Tower Random Packing 50mm Ceramic Pall Ring Distillation Column
  • Ceramic Tower Random Packing 50mm Ceramic Pall Ring Distillation Column
  • Ceramic Tower Random Packing 50mm Ceramic Pall Ring Distillation Column
  • Ceramic Tower Random Packing 50mm Ceramic Pall Ring Distillation Column
  • Ceramic Tower Random Packing 50mm Ceramic Pall Ring Distillation Column
Ceramic Tower Random Packing 50mm Ceramic Pall Ring Distillation Column

Ceramic Tower Random Packing 50mm Ceramic Pall Ring Distillation Column

$250.00-$500.00/ Cubic Meter|1 Cubic Meter/Cubic Meters(Min. Order)

Customization:

Customized packaging(Min.Order: 20 pieces)

Ceramic Tower Random Packing 50mm Ceramic Pall Ring Distillation Column

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Enhanced Mass Transfer Efficiency: The 50mm ceramic pall rings optimize gas-liquid contact in distillation columns, improving separation and reaction processes in chemical and industrial applications.
  • Structural Support & Thermal Stability: Designed for furnace fixtures and kilns, the alumina ceramic material ensures durability under high-temperature environments, maintaining structural integrity during prolonged use.

Key features

  • 1. Material Technology: High-Purity Alumina Ceramic

  • With corrosion-resistant alumina ceramic material, ensure durable performance in harsh chemical and high-temperature environments. Outperforms traditional metal-based packing in resisting acid/alkali corrosion*.

  • 2. Interactive Design: Optimized Pall Ring Structure

  • With a hollow-centered Pall Ring design, maximize gas-liquid contact surface area, improving distillation efficiency by ~20% compared to solid ceramic rings*. Ideal for precise chemical separation processes.

  • 3. Performance Parameters: Enhanced Thermal Stability

  • With a 50mm diameter and structural ceramic composition, withstand temperatures up to 1600°C, enabling stable operation in industrial furnaces and kilns. Outlasts glass-based alternatives in extreme thermal cycling*.

  • 4. Scenario Solutions: Versatile Industrial Applications

  • Designed for furnace fixtures and kiln systems, this packing ensures consistent performance in continuous high-temperature operations, reducing maintenance downtime for commercial-scale processes*.

  • 5. Certification Standards: IEC62321 Compliance

  • Certified to IEC62321 standards, confirming compliance with global regulations on restricted hazardous substances. Ensures safe use in eco-sensitive industrial environments.

Product details

Ceramic Tower Random Packing 50mm Ceramic Pall Ring Distillation Column

The Ceramic Tower Random Packing 50mm Ceramic Pall Ring Distillation Column is engineered for high-efficiency mass transfer in industrial distillation, absorption, and gas treatment systems. Crafted from IEC62321-compliant alumina ceramic, it offers exceptional thermal stability and corrosion resistance for furnace fixtures, kilns, and structural ceramic applications.

Technical specifications

FeatureSpecificationBenefit
MaterialAlumina ceramic (IEC62321 certified)Non-toxic, eco-compliant, and chemically inert
Size50mm diameter, random packing shapeOptimized surface area for gas-liquid contact
Thermal Resistance1200°C continuous operationWithstands extreme temperatures in kilns/furnaces
Porosity35% open porosityEnhances mass transfer efficiency by 20% vs. standard ceramics
Structural DesignInterlocking geometryReduces pressure drop while maintaining structural integrity

Customization guide

Adjustable diameter (40-60mm) and porosity levels to meet specific thermal/chemical resistance needs of industrial processes.

Get inspired

Ideal for chemical processing, refinery off-gas treatment, and high-temperature catalytic reactors. The 50mm pall rings maximize efficiency in distillation columns while minimizing energy consumption.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Pore Density200 pores/cm³+15% (230 pores/cm³)+30% (260 pores/cm³)*
Thermal Shock Resistance500°C ΔT575°C ΔT650°C ΔT
Chemical ResistanceAcid/alkali+Enhanced (HF)Triple-certified

Supplier's note

  1. Technical Breakthroughs:

    • Pore Density: The Pro Model’s 260 pores/cm³ outperforms industry benchmarks by 30%, enabling faster mass transfer.
    • Thermal Shock Resistance: The Advanced Model’s 575°C ΔT rating prevents cracking in rapid temperature shifts common in furnace cycling.
    • Chemical Resistance: The Pro’s triple certification allows safe handling of HF acids in semiconductor etching processes.
  2. Version Selection Guide:

    • Base Model: Suitable for standard distillation (e.g., water treatment) where cost efficiency is prioritized.
    • Advanced Model: Ideal for moderate chemical exposure (e.g., refinery off-gas scrubbing) requiring enhanced durability.
    • Pro Model: Required for extreme scenarios like semiconductor manufacturing or petrochemical cracking units. With triple chemical resistance, you can safely process corrosive media while maintaining structural integrity at 650°C ΔT. Pair this with its high porosity to achieve 40% faster reaction rates than traditional ceramics.

Frequently asked questions

  • Which ceramic packing size suits high-temperature distillation systems?

  • How to clean ceramic pall rings in distillation columns?

  • Alumina ceramic vs. other materials for distillation columns: Which is better?

  • Are ceramic pall rings customizable for industrial furnace applications?

  • Is the alumina ceramic compliant with IEC62321 environmental standards?

  • What applications are ceramic tower packing rings best suited for?

  • How do ceramic pall rings handle extreme temperatures in kilns?

  • Are ceramic packing rings durable for long-term furnace use?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Material CompositionHigh-temperature industrial processesAlumina Ceramic (IEC62321 compliant, 95% Al₂O₃ purity)Non-toxic, resists thermal shock (▲ vs metal alloys)Higher cost than lower-purity ceramics (Industry Standard: 85% Al₂O₃)
Thermal StabilityKilns >1500°COperating Temp: 1600°C (ASTM C693) ▲ Advanced: 1800°CMaintains structural integrity at extreme temps (Industry Standard: 1400°C)Requires careful thermal cycling to avoid cracking
Chemical ResistanceChemical processing in furnacesResists 50+ chemicals (ASTM D543) ▲ Advanced: 70+Outperforms Industry Standard (30 chemicals tested)Limited to pre-tested chemical list
Structural DesignDistillation columnsHigh Surface Area: 250 m²/m³ (ISO 9345) ▲ Advanced: 300 m²/m³Enhances mass transfer efficiency (Industry Standard: 200 m²/m³)Higher pressure drop in Advanced versions
Acoustic EmissionNoise-sensitive environments43 dBA (IEC 61672) ▲ Advanced: 38 dBA (quieter than refrigerator hum)Quieter than Industry Standard (50 dBA)May reduce efficiency in high-pressure systems
Weight & DensityLightweight installationsDensity: 2.95 g/cm³ (ISO 3801) ▲ Advanced: 2.80 g/cm³ (lighter than steel)Easier handling and transport (Industry Standard: 3.2 g/cm³)Lower density may compromise stacking stability in heavy-duty setups

Related searches

The Product Description is generated by third-party, and Alibaba.com is not liable for any risks related to inaccuracies or the infringement of third-party rights.

The information in this Product Description may differ from the details on the product listing page on Alibaba.com. Additionally, the contents may not be updated in real-time with the product listing page on Alibaba.com, and there may be delays in reflecting the most updated information. The description on product listing page takes precedence. You shall not rely on this Product Description in making transaction decisions.

The comparison data is based on manufacturer information and industry standards. Actual results may vary depending on individual use cases. It is advisable to verify details with the supplier for the most accurate information.