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TRDN-2 Special Molecular Sieve Adsorbent For N2O

TRDN-2 molecular screen is a silicon aluminate crystal material with industrialized three-dimensional pore structure, and also the pore size of the crystal is 0.9 nm. It is a special molecular filter for the removal of N2O from raw gas in cryogenic air splitting up.

Concerning TRDN-2 Special Molecular Screen Adsorbent For N2O:

Chemical property

TRDN-2 N2O particular molecular sieve adsorbent is made of a specific material. Its chemical properties are stable, with good acid resistance, alkali resistance, high temperature and other characteristics. In the adsorption process, the TRDN-2 molecular sieve adsorbent can chemically react with N2O molecules to form a stable adsorption bond to realize the adsorption and removal of N2O.

Physical properties

TRDN-2 N2O, a particular molecular sieve adsorbent, has excellent physical properties. In addition, TRDN-2 molecular sieve adsorbent also has good mechanical strength and wear resistance and can adapt to harsh working environments.

Adsorption performance

TRDN-2 N2O, a particular molecular sieve adsorbent, has excellent adsorption properties. Under specific temperature and pressure conditions, TRDN-2 molecular sieve adsorbent can quickly adsorb N2O gas into stable solid compounds. By controlling the reaction conditions, N2O removal can be achieved efficiently. In addition, TRDN-2 molecular sieve adsorbent also has high selectivity, which can preferentially adsorb N2O gas, while the adsorption of other gas components is weak.

Regeneration performance

TRDN-2 N2O, a particular molecular sieve adsorbent, has good regeneration performance. After the adsorption of N2O, the TRDN-2 molecular sieve adsorbent can be regenerated by heating or chemical methods. The adsorbed N2O molecules are released in the regeneration process, and the molecular sieve adsorbent can recover its adsorption properties. The regeneration performance makes the TRDN-2 molecular sieve adsorbent able to be recycled, and the use cost is reduced.

TRDN-2

Production Method ofTRDN-2 Special Molecular Screen Adsorbent For N2O:

Preparation of raw materials: preparation of the required raw materials, including specific types of molecular sieves, active components, and other additives. Ensure that the purity and granularity of raw materials meet production requirements and that the supply of raw materials is sufficient and reasonable.

Mixing and grinding: molecular sieve raw materials, active components and other additives are mixed in a particular proportion, and the mixture is ground to a uniform fine powder by grinding equipment. Parameters such as temperature, humidity and pressure must be controlled during grinding to ensure the mixture is thoroughly and evenly ground.

Granulation: After grinding, the mixture is granulated to form particles of a specific shape and size. In the granulation process, the particle size and shape should be controlled to meet the requirements of TRDN-2 N2O particular molecular sieve adsorbent.

Drying and roasting: the coarse particles are dried and roasted to remove moisture and organic matter and activate the adsorption properties of the molecular sieve. 

Screening and packaging:

  • The roasted molecular sieve adsorbent is screened.

  • The unqualified particles are removed.

  • The package is carried out to facilitate transportation and use.

In the screening process, selecting the appropriate screen and screening equipment is necessary to ensure that the particle size and shape of the molecular sieve adsorbent meet the requirements.



Applications ofTRDN-2 Special Molecular Screen Adsorbent For N2O:

Industrial waste gas treatment: TRDN-2 N2O, a particular molecular sieve adsorbent, can be used for treatment, effectively removing N2O gas in waste gas and reducing its environmental impact. 

Laboratory research: In laboratory research, N2O gas is an essential experimental gas, but its emission will cause pollution to the environment. TRDN-2 N2O, a particular molecular sieve adsorbent, can be used for N2O gas adsorption in the laboratory to reduce its environmental impact. At the same time, TRDN-2 molecular sieve adsorbent can also be used for gas separation and purification in the laboratory to improve the accuracy and reliability of the experiment.

Automobile exhaust treatment: Automobile exhaust is one of the primary sources of urban air pollution, which contains a lot of N2O gas. TRDN-2 N2O, a particular molecular sieve adsorbent, can be used in automobile tail gas treatment systems to remove N2O gas in tail gas and reduce air pollution. At the same time, TRDN-2 molecular sieve adsorbent can also be used to remove other harmful gases in automobile exhaust and improve the environmental performance of automobiles.

Energy sector: In the energy sector, N2O gas is a greenhouse gas that impacts global climate change. TRDN-2 N2O, a particular molecular sieve adsorbent, can be used to treat waste gas in the energy production process to reduce the emission of N2O gas and its impact on climate change. 

Environmental monitoring: In environmental monitoring, N2O gas is one of the essential monitoring indicators. TRDN-2 N2O, a particular molecular sieve adsorbent, can be used for gas sampling and analysis in environmental monitoring. At the same time, TRDN-2 molecular sieve adsorbent can also be used for gas separation and purification in environmental monitoring, providing better technical support for environmental monitoring.

air cleanser, with a thickness of about 100mm.It can execute deep removal of N2O gas after initial treatment, and also the elimination rate is &
ge; 98 %.In regular usage, after TRDN-2
molecular sieve reaches to the adsorption saturation, it can desorb and regenerate at high temperature by variable temperature adsorption. Molecular Screen Waste Therapy & Disposal: Molecular sieve can bedealt with as well as taken care of as basic solid waste after usage. Packing & Delivery of
TRDN-2 Unique Molecular Screen Adsorbent For N2O: 55 gallon/ sealed steel drum;
can customize various product packaging according to client demands.

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