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Gamma Alumina

Gamma Alumina Carriers (Oil-Column Molding Method) .
Our spherical alumina carriers are produced through the innovative drop ball method (oil - column molding method). This unique manufacturing process endows the carriers with excellent physical and chemical properties, making them highly suitable for a wide range of catalytic applications.

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1.Product Description:

Our spherical alumina carriers are produced through the innovative drop ball method (oil  -  column  molding  method).  This  unique  manufacturing  process  endows  the carriers with excellent physical and chemical properties, making them highly suitable for a wide range of catalytic applications.

 

2. Physical and Chemical Properties

 

Item

Value

Value

Diameter (mm)

1.6 - 1.8

1.6 - 1.8

Pore volume (ml/g)

> 0.56

> 0.56

BET  specific  surface  area (m²/g)

 

190 ± 10

 

190 ± 10

Bulk density (g/ml)

0.60 ± 0.02

0.68 ± 0.02

Crush strength (N/P)

> 35

> 40

Al₂O₃ content (wt.%)

> 97

> 97

Sn content (wt.%)

0.30 - 0.35

0.30 - 0.35

Si content (ppm)

< 150

< 150

Fe content (ppm)

< 100

< 100

Na content (ppm)

< 150

< 150

 

3. Applications

These spherical alumina carriers have found extensive applications in various fields:

Propane  Dehydrogenation:  In  the  propane   dehydrogenation  process,   the  high   - strength and large - pore - volume characteristics of our alumina carriers ensure good catalyst  dispersion  and  high  reaction  activity,  improving  the  conversion  rate  of propane and the selectivity of propylene.

Continuous Catalytic Reforming: The carriers  stable physical and chemical properties make them ideal for continuous catalytic reforming reactions. They can effectively support the active components of the catalyst, maintain the stability of the reaction process, and increase the yield of high - octane gasoline components.

Anthraquinone  Hydrogenation:  Our   alumina  carriers  provide   a   suitable  reaction environment for anthraquinone hydrogenation reactions. Their large specific surface area   allows   for   better   adsorption   and   activation   of  reactants,   promoting   the hydrogenation reaction and improving the efficiency of the process.

Long - Chain Alkane Dehydrogenation: For long - chain alkane dehydrogenation, the carriers ’ excellent mechanical strength and thermal stability can withstand the harsh reaction conditions, ensuring the long - term stability of the catalyst and the smooth progress of the reaction.

 

4. Storage and Handling

Storage: Store the spherical alumina carriers in a dry, cool, and well - ventilated place. Avoid exposure to moisture, strong acids, and strong alkalis to prevent damage to the physical and chemical properties of the carriers.

Handling: When handling the  carriers,  use  appropriate  tools  to  avoid  mechanical damage. During transportation, ensure that the packaging is intact to prevent breakage and contamination.

 

5. Quality Assurance

We are committed to providing high - quality spherical alumina carriers. Our products undergo  strict  quality  control  procedures  at  every  stage  of production,  from  raw material inspection to final product testing. We guarantee that our products meet the specified physical and chemical property requirements and application performance standards.


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