Molecular sieves

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TRDN-3 Molecular Sieve Adsorbent For Flue Gas Denitration

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TRDN-3 molecularsieve is made from high-silicon ziolite with a cross-direct three-dimensional structure. It has excellent adsorption capabilities of SO2, NOx and acidic gases.

About TRDN-3 Molecular Sieve Adsorbent For Flue Gas Denitration:

TRDN-3 molecularsieve is high-silicon ziolite molecular sieve. It has excellent adsorption of SO2, NOx and any other acidic gases. The unique structure of TRDN-3 molecularsieve and the selected Si/Al proportion make it more attractive. They have higher thermal and hydrothermal stability and acid resistance.


Trusted global supplier TRDN-3 Molecular Sieve Adsorbent For Flue Gas Denitration . To receive the current price, send us an inquiry , You can also buy bulk.

Technical Parameter TRDN-3 Molecular Sieve Adsorbent For Flue Gas Denitration: Si/Al Ratio 25-35 BET Surface Area >=280 m2/g NOx Adsorption >=0.3mmol/g Crusher Strength >=30N Bulk Density >=0.55g/ml


The properties TRDN-3 Molecular Sieve Adsorbent For Flue Gas Denitration:

Large adsorption ability, high capacity to absorb SO2, NOx or other acidic gases

The high resistance to acid, which allows it to function stably in acidic conditions, gives the product a very long life span.

Hydrophobic properties excellent, hydrothermal stability high

Applicaciones TRDN-3 Molecular Sieve Adsorbent For Flue Gas Denitration:

TRDN-3 is an adsorbent that selectively removes NOx from flue gases. It is molecular sieve-like for fluegas denitration. You can reap economic, environmental and social benefits.


Shipping and Packing of Molecular Sieve Adsorbent for Flue Gas Denitration:

55 gallon/sealed steel drum
Customers can request customized packaging.

Waste Treatment & Disposal:

TRDN-3 molecular sieve, after saturation of adsorption, can be desorbed and then regenerated through variable temperature.

TRDN-3 Molecular Sieve Adsorbent For Flue Gas Denitration Properties

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TRDN-3 Molecular Sieve Adsorbent For Flue Gas Denitration Health & Safety Information

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