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Metal Random Packing SS304 Pall Ring Stainless Steel 16mm 25mm 50mm for Absorption Tower

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Enhanced Mass Transfer Efficiency: The stainless steel pall rings (SS304) provide a large surface area and optimized fluid distribution, enabling efficient gas-liquid contact in absorption towers, scrubbers, and reactors.
  • Structural Design: The lattice-like interlocking structure improves airflow/fluid flow, reduces channeling, and ensures uniform distribution for applications like catalytic reactions, heat exchange, and gas absorption.

Key features

  • 1. Corrosion-Resistant 316L Stainless Steel

  • With corrosion-resistant 316L stainless steel, ensure durability in harsh chemical environments compared to standard carbon steel.*

  • 2. Lattice-Cut Pall Ring Design

  • With lattice-cut Pall Ring design, maximize surface area for 30% improved efficiency in absorption processes vs. solid packing.*

  • 3. Versatile Size Options (16–50mm)

  • Available in 16–50mm sizes, optimize flow rates and pressure drop for diverse tower configurations, adapting to both small-scale and industrial applications.

  • 4. Industrial Grade Scenario Solutions

  • Engineered for absorption towers in chemical plants, enabling continuous operation under high-temperature and corrosive conditions compared to less durable materials.

  • 5. Customizable Configurations

  • With customizable configurations, adapt to specific tower dimensions and process requirements for tailored performance.*

Product details

Metal Random Packing SS304 Pall Ring Stainless Steel 16mm 25mm 50mm for Absorption Tower

The Metal Random Packing SS304/316L Pall Ring is a high-performance stainless steel packing material designed for absorption towers and industrial reactors. Available in sizes of 16mm, 25mm, and 50mm, these rings feature a lattice-like structure that maximizes surface area for efficient fluid dispersion, heat transfer, and catalytic reactions. Engineered with corrosion-resistant stainless steel (grades SS304 and 316L), they ensure durability in harsh chemical environments and high-temperature applications.

Technical specifications

FeatureSpecificationApplication Scenario
MaterialStainless Steel (SS304/316L)Corrosion-resistant chemical reactors
Sizes16mm, 25mm, 50mmCustomized for tower diameter and flow rate
Surface Area250–350 m²/m³ (varies by size)Enhanced mass transfer in absorption towers
Corrosion ResistancePassivation compliant (ASTM A967)Acidic/alkaline environments
Temperature Range-196°C to +600°CCryogenic and high-temperature systems
Pressure RatingUp to 10 MPaHigh-pressure industrial reactors

Customization guide

Adjustable parameters include:

  • Size: Tailored to tower dimensions for optimal packing density.
  • Material Grade: Choose between SS304 (general use) or 316L (high-corrosion resistance).
  • Surface Treatment: Passivation or coating for specialized chemical resistance.

Get inspired

With the lattice design of our Pall Rings, you can achieve 30% higher efficiency in absorption processes compared to traditional packings. The open structure ensures uniform fluid distribution, reducing channeling and pressure drop in gas-liquid contact systems.

Choose your model

ParameterBase Model (16mm)Advanced Model (25mm)Pro Model (50mm)
Surface Area250 m²/m³+20% (300 m²/m³)+40% (350 m²/m³)
Pressure Drop150 Pa/m-10% (135 Pa/m)-25% (112.5 Pa/m)
Max Operating Temp600°CSameSame
Recommended UseSmall towersMedium-scale reactorsLarge industrial systems

Supplier's note

  1. Three Technical Breakthroughs:

    • Lattice Design: 35% higher surface area than standard Pall Rings improves mass transfer efficiency.
    • 316L Grade: Triple the corrosion resistance of SS304, enabling use in sulfuric acid environments.
    • Modular Sizing: Scalable diameters (16–50mm) adapt to tower capacities, reducing retrofit costs.
  2. Optimal Version Selection:

    • Base Model (16mm): Ideal for small-scale labs or pilot plants needing cost-effective solutions.
    • Advanced Model (25mm): Best for mid-sized chemical plants requiring balanced efficiency and pressure control.
    • Pro Model (50mm): Suited for large industrial facilities where high throughput and minimal pressure drop are critical.

    Example: The Pro Model’s 350 m²/m³ surface area enables 25% faster absorption in flue gas scrubbers compared to industry-standard packings. When paired with 316L’s chloride resistance, it ensures safe operation in seawater desalination systems.

Frequently asked questions

  • Which Metal Random Packing SS304 Pall Ring size (16mm, 25mm, or 50mm) is best for absorption towers in chemical plants?

  • What are the key differences between SS304 and 316L stainless steel Pall Rings for harsh environments?

  • How do I clean and maintain stainless steel Pall Rings in absorption towers?

  • Can I customize the dimensions or design of Metal Random Packing SS304 Pall Rings for a bespoke absorption tower?

  • Are Metal Random Packing SS304 Pall Rings FDA-approved for pharmaceutical applications?

  • Can Pall Rings withstand high-temperature operations in distillation columns?

  • Why choose random packing Pall Rings over structured packing for absorption towers?

  • How does the lattice design of Pall Rings improve absorption tower performance?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Material CompositionCorrosive environments, high durabilityIndustry: Carbon Steel (ASTM A36)Our Base: SS304 (ASTM A240) ▲ (Better corrosion resistance)Our Advanced: 316L (ASTM A276) ▲▲ (Superior in harsh chemicals)
Base resists mild acids; Advanced handles aggressive chemicals like chloridesBase may corrode in chloride-rich environments; Advanced is costlier
Corrosion ResistanceChemical plants, seawater systemsIndustry: Passivation only (ASTM A967)Our Base: Withstands 50+ chemicals (ASTM D543)Our Advanced: Resists 100+ chemicals (ASTM D543) ▲▲
Base suits mild corrosives; Advanced works in extreme chemical exposureBase may degrade in harsh acids; Advanced requires higher investment
Surface AreaHeat exchangers, catalytic reactorsIndustry: 80 m²/m³ (typical)Our Base: 120 m²/m³ (ISO 10111) ▲Our Advanced: 150 m²/m³ (ISO 10111) ▲▲
Base improves efficiency in standard processes; Advanced boosts reaction ratesHigher surface area may trap particles, requiring frequent cleaning
Pressure ToleranceHigh-pressure reactorsIndustry: 100 psi (ASME B31.3)Our Base: 200 psi (ASME B31.3) ▲Our Advanced: 300 psi (ASME B31.3) ▲▲
Base handles moderate pressures; Advanced suits extreme industrial setupsBase may fail in high-pressure systems; Advanced requires robust infrastructure
Temperature RangeHigh-temperature processesIndustry: -20°C to 400°C (ASTM A240)Our Base: -20°C to 600°C (ASTM A240) ▲Our Advanced: -20°C to 800°C (ASTM A276) ▲▲
Base works in most industrial temps; Advanced operates in extreme heatBase may warp at 600°C+; Advanced requires specialized handling
CustomizationTailored industrial setupsIndustry: Limited sizes (10-25mm)Our Base: 16-50mm (ISO 3098) ▲Our Advanced: 16-100mm (ISO 3098) ▲▲ + shape adjustments
Base fits standard towers; Advanced offers flexibility for unique designsCustom sizes may delay delivery; Advanced shapes add complexity to installation

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