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Dechlor Adsorbent Beads 204
Rapid removal of hydrogen chloride from dry gas, liquefied gas LPG, liquid hydrocarbons, and synthesis gas in reforming units.
These Adsorbent catalysts are non-regenerative adsorbent is the preferred product for removing trace HCl from Olefin-containing hydrocarbon streams. RXSOL Adsorbent Beads provides the highest chloride capacity in commercial service, while significantly minimizing green oil and organic chloride formation. Features and benefits include:
Optimized pore size distribution leading to higher capacity. High degree of macro-porosity for rapid adsorption and short mass transfer zone. High surface area substrate to extend bed life. Customized adsorbent for ultra low activity in process streams.
This RXSOL Adsorption Beads are the latest generation adsorbent for impurity removal.
Adsorbent is used to treat the net gas and LPG produced in catalytic reforming units, the reactor effluent from process units, and various liquid hydrocarbon streams.
Dechlorination catalyst is prepared using pseudo boehmite and metal active components with excellent dechlorination performance as raw materials by using a ball rolling process; It has the characteristics of rapid reaction with hydrogen chloride. The remarkable characteristics of this product are large specific surface area, rapid reaction, strong adaptability, high chlorine capacity, and wide application range. It can be used under different pressures and can be used to remove hydrogen chloride from a wide range of materials.
Mainly used in the rapid removal of hydrogen chloride from dry gas, liquefied gas (LPG), liquid hydrocarbons, and synthesis gas in reforming units, isomerization units, dehydrogenation units, and synthesis gas units; In particular, an ideal adsorbent for the removal of hydrogen chloride from olefin containing materials can significantly reduce the generation of green oil and organic chlorides.
- High Surface Area: Activated alumina features a porous structure with a high surface area (often exceeding 200 m²/g), providing extensive contact sites.
- Chemically Active Sites: The surface reacts with gaseous or liquid contaminants (like HCl in industrial streams or chloride ions in water) to trap them permanently within the matrix.
- Promoted Formulations: Special active promoters are often added to activated alumina to maximize chloride loading capacity and prevent unwanted side reactions like green oil formation.
Where are Dechlor Adsorbent Beads 204 used?
- Petrochemical & Refining: Used in fixed guard beds to strip HCl from reformer hydrogen gas streams, liquid hydrocarbons, and feedstocks to prevent equipment corrosion and catalyst poisoning.
- Water Treatment: Applied to capture residual chloride or chlorine-related ions and anions from industrial process water or wastewater.
- Air Purification: Helps remove gaseous chlorine and halogenated compounds from industrial exhaust or manufacturing environments.
|
Sr. No. |
Description |
Limit |
Results |
|---|---|---|---|
|
1 |
Particle Shape |
White Spheres |
White Spheres |
|
2 |
Size of Granules (Diameter) |
2–5 mm |
2–5 mm |
|
3 |
Bulk Density (g/cc) |
Max. 0.75 |
0.73 |
|
4 |
Attrition Loss |
Max. 0.5% |
0.3% |
|
5 |
Moisture at 150°C |
Max. 2% |
0.78% |
|
6 |
Adsorption Capacity at 60% RH (by wt.) |
Min. 20 |
23.4% |
|
7 |
Surface Area (m²/g) |
Min. 350 |
381 |
|
8 |
Pore Volume (ml/g) |
Min. 0.4 |
0.45 |
|
9 |
Bed Crushing Strength (%) |
Min. 90 |
93 |
Chemical Analysis
|
Sr. No. |
Description |
Limit |
Results |
|---|---|---|---|
|
1 |
Al₂O₃ |
Min. 93.5 |
98.6 |
|
2 |
Na₂O |
Max. 0.35 |
0.23 |
|
3 |
Fe₂O₃ |
Max. 0.10 |
0.06 |
|
4 |
SiO₂ |
Max. 0.015 |
0.007 |
Benefits of using RXSOL Dechlor Adsorbent Beads for hydrogen chloride gas extraction and adsorption
- Low Effluent Levels: Capable of reducing chloride output down to trace levels in proper gas-phase designs.
- Mechanical Strength: Resists crushing, softening, or disintegrating during long cycles in fixed beds or aqueous environments.