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Catalyst bed support

I have found results from6000+products and2000+suppliers aboutCatalyst bed support

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Customization Available
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Manufacturer First
Product Attributes:
Sludge Dewatering Machine
Type: Tubular Reactor
Type: Vibration
Environmental Monitoring Instrument
Type: Pocket Filter
Response Type: Hydrogenation
Effect Size: Primary Catalysts
Application Industry: Industry
Color: Gray
Material: Alumina
Usage: Chemical
Method: Physical Treatment
Size: Small
Certification: CE
Condition: New
Surface Finish: Smooth
Surface Treatment: Without Processing
Classification: Alumina
Grade Standard: Industrial Grade
Kind: Acidic Oxide
Quality: Eligible
Form: Spheres
Diameter: 8 mm
Layers: Single
Hole Shape: Square
Structure: Single Network
Pressure: Positive
Heating: Electric Heating
Heat Transfer Structure: Combined
Automatic Grade: Automatic
Heat storage materials
Cell Shape: Hexagonal
Temperature Resistance: 1400℃
Good Mechanical Strength
1580< Refractoriness< 1770
Shape: Ball
Heating Mode: Transmission
Material Status: Granule
Drying Medium: Inactive Gas
Operation Pressure: Atmospheric Pressure
Operational Method: Intermittent
Medium Material: Fiberglass
Non-Woven Polyester Fiber
The Filter Type
Filtration Grade: HEPA Filter
Filter Bag Sectional Shape: Round Bag
Filter Bag Environment: High-Temperature
Cartridge Installation: Vertical Lifting
Color: White
Material: Stainless Steel
Material: Plastic
Material: Metal
Material: Cordierite
Material: Non-woven
Usage: Petroleum
Usage: Industrial
Usage: Agriculture
Usage: Hospital
Usage: Building Materials
Usage: Machinery
Usage: Metallurgy
Usage: Liquid Filter
Usage: Air Filter
Usage: Solid Filter
Usage: Dust Filter
Certification: ISO 9001
Surface Finish: Polished
Classification: High-Alumina
Kind: Amphoteric Oxide
Quality: First Class
Diameter: 3 mm
Structure: Single Layer
Good Thermal Insulation Performance
Feature: High-Temperature Resistant
Low Thermal Conductivity
Heating Mode: Dielectric
Material Status: Powder
Material Status: Strap
Material Status: Bulk
Material Status: Solution
Drying Medium: Superheated Steam
Drying Medium: Effluent Gas
Drying Medium: Air
Operational Method: Semi-Continuous

Sourcing guidance for Catalyst Bed Support

How to choose the right material for Catalyst Bed Support Media?

Selecting the correct material is critical for chemical stability and thermal resistance. For most petrochemical and refining applications, Inert Alumina Ceramic Balls (with Al2O3 content ranging from 25% to 99%) are the industry standard. High Alumina (99%+) supports should be prioritized for high-temperature environments or processes involving strong alkalis or acids to prevent silica leaching, which can poison downstream catalysts. For specific applications like ammonia synthesis, Ceramic Honeycomb or Perforated Ceramic Plates may be used to optimize pressure drop.

What are the key technical specifications to verify before purchasing?

Buyers must evaluate Crushing Strength, Leachable Silica Content, and Thermal Shock Resistance. Ensure the crushing strength meets or exceeds ASTM D6175 standards to prevent the media from collapsing under the weight of the catalyst bed. Additionally, verify the Water Absorption rate (typically <0.5%) and Bulk Density, as these factors influence the structural integrity and chemical inertness of the support media during long-term reactor cycles.

How does the size and shape of the support media affect reactor performance?

The sizing strategy usually follows a graded bed approach, where smaller balls are placed near the catalyst and larger balls (up to 2 inches) are placed at the bottom. This configuration prevents catalyst migration and ensures uniform flow distribution. Choosing spherical shapes is generally preferred over irregular chips to minimize pressure drop and prevent 'channeling,' which can lead to hot spots and reduced reactor efficiency.

What compliance standards and certifications are required for industrial use?

Suppliers should provide Material Test Reports (MTRs) and comply with ISO 9001 quality management systems. For international projects, adherence to ASTM (American Society for Testing and Materials) or equivalent DIN/GB standards for chemical porcelain and industrial ceramics is mandatory. Ensure the supplier can provide third-party inspection reports (e.g., SGS or Intertek) for chemical composition and physical properties before shipment.

Cross-Border Procurement Considerations for Catalyst Bed Support

What are the primary risks when importing ceramic support media internationally?

The most significant risks are breakage during transit and chemical non-compliance. Ceramic balls are heavy and brittle; if not packed in reinforced jumbo bags or UV-resistant woven bags on fumigated pallets, high attrition rates can occur. Always stipulate a maximum allowable dust/fine percentage (usually <1%) upon arrival to avoid clogging reactor internals.

How can buyers negotiate better terms with suppliers on Made-in-China.com?

Focus on Total Cost of Ownership (TCO) rather than just the per-ton price. Negotiate for volume-based discounts (e.g., 10-15% off for full container loads) and request free technical consultation regarding the grading layers. For long-term partnerships, seek flexible payment terms such as Net 30 or LC (Letter of Credit) to manage cash flow for large-scale industrial projects.

What logistics and shipping precautions should be taken for this product?

Due to the high density of ceramic media, weight limits for 20ft containers are often reached before the volume is full. Ensure the supplier is experienced in weight-balanced loading to prevent container damage. For shipping to remote refineries, confirm the Incoterms (FOB or CIF) and ensure the maritime insurance covers 'All Risks' including breakage, given the fragile nature of ceramic materials.

How to ensure transaction security and quality alignment?

Utilize the secured payment services provided by Made-in-China.com to protect your funds until the Bill of Lading is issued. It is highly recommended to conduct a Pre-Shipment Inspection (PSI) to verify the Alumina content via XRF analysis and perform a random crush test at the factory to ensure the batch matches the approved sample.

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