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Molecular sieves

Lithium Molecular Sieve TROX-100

TROX-100 series high-efficiency oxygen-producing molecular sieve is a lithium X-type aluminosilicate crystal, which is an oxygen-producing molecular sieve with international advanced level. Widely used in: steel, non-ferrous metallurgy, chemical industry,
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Description
Lithium Molecular Sieve TROX-100
What is Lithium Molecular Sieve TROX-100 Series ?

Chemical structure: The chemical structure of lithium molecular sieve OX-100 comprises elements such as silicon, aluminum, oxygen, and hydrogen. Its crystal structure is a three-dimensional frame structure composed of tetrahedral structures. Silicon and aluminum ions occupy tetrahedral positions alternately, forming a highly symmetrical structure.

Channel and port size: Lithium molecular sieve OX-100 has a uniform channel and port size, which synthesis conditions can adjust. Its port size depends mainly on its range of applications. For example, if it is necessary to adsorb and separate molecules with smaller diameters, the port size should be small.

High adsorption capacity: Lithium molecular sieve OX-100 has a high capacity due to its highly symmetrical structure and uniform pore channels. It can adsorb and separate molecules of different diameters. For example, it can separate the mixture of C4 ~ C5 hydrocarbons produced by petroleum cracking to obtain high-purity n-hexane.

High stability: Lithium molecular sieve OX-100 has very high thermal stability and can be used at high temperatures. It also has good hydrothermal stability and can be used in aqueous solutions.

Reusability: OX-100 lithium molecular sieve can be regenerated and reused, and its adsorption and separation capacity will not be reduced with the increase in the number of uses.


Technical Parameter of Lithium Molecular Sieve TROX-100 Series
Item Type Diameter N2/O2 Selectivity Static H2O
Adsorption   
Static N₂ Adsorption Crush resistance Package Moisture Bulk Density
TROX-100 0.4-0.8 6.2 ≤1.5 22   0.5 0.63±0.03
TROX-101 1.6-2.5 6.2 ≤1.5 22   0.5 0.63±0.03
TROX-103 1.3-1.7 6.2 ≤1.5 22 15 0.5 0.63±0.03
Unit mm % %    N Wt,% g/ml
Note 25℃760mmHg RH75%,25℃ 25℃760mmHg Averageh 550℃KF Settled
 
Application of Lithium Molecular Sieve TROX-100 Series

Petroleum industry: Lithium molecular sieve OX-100 can be used in petroleum cracking and petrochemical processes in the petroleum industry. It can adsorb and separate molecules of different diameters produced by pyrolysis, including a mixture of C4 ~ C5 hydrocarbons, resulting in high-purity monomers. In addition, it can also be used to remove impurities such as hydrogen and nitrogen in cracked gas to improve the purity and quality of petroleum products.

Natural gas processing: Lithium molecular sieve OX-100 can be used for dehydration and drying during natural gas processing. It can adsorb and separate water molecules from natural gas, thereby preventing hydrate formation and ensuring the safety of natural gas transportation and storage. In addition, it can also be used to remove acidic gases such as carbon dioxide in natural gas and improve the quality of natural gas.

Environmental protection: Lithium molecular sieve OX-100 can be used for gas purification in environmental protection. It can remove harmful gases from the air, including carbon monoxide, carbon dioxide, nitrogen oxides, and organic pollutants in water, such as phenol, heavy metal ions, etc. In addition, it is also used in areas like sewage treatment or wastewater gas treatment to improve the quality of the environment.

Organic chemistry: Lithium molecular sieve OX-100 can be used for reaction catalysis in organic chemistry. It can act as a catalyst carrier, combining different catalysts in its pores to facilitate the conduct of a specific reaction. In addition, it can also be used in the field of dehydration and drying in organic synthesis, as well as the separation and purification of organic matter.

Gas separation: Lithium molecular sieve OX-100 can be used to separate and purify different gases in the field of gas separation. It can remove impurities in mixed gases, such as carbon dioxide, carbon monoxide, etc., and separate and purify different gases, such as hydrogen, nitrogen, oxygen, etc. In addition, it can also be used to make various gas separation membranes to facilitate the separation and purification of various gases.


Production Method of Lithium Molecular Sieve TROX-100 Series

Preparation of synthetic raw materials: The synthesis of lithium molecular sieve needs to prepare the corresponding raw materials, including sodium silicate, sodium hydroxide, sodium sulfate, sodium chloride, and other inorganic compounds, as well as phenol, benzyl alcohol, and other organic compounds. These raw materials must be added to the reactor in proportion and order.

Synthesis reaction: The prepared raw materials are synthesized under certain temperature and pressure conditions. This process requires the use of special catalysts, such as sulfuric acid, sodium hydroxide, etc., to promote the reaction. At the end of the synthesis reaction, the resulting product is a mixture of lithium molecular sieves.

Separation and washing: The resulting lithium molecular sieve mixture needs to be separated and washed. This process requires filtration equipment to separate the molecular sieve from the reaction mixture, then wash it with an acid-base solution and water to remove impurities and organic matter.

Drying and grinding: The washed lithium molecular sieve must be dried and ground. Drying can be done by drying or sun drying, and grinding is to grind the molecular sieve into a fine powder for subsequent processing.

Product treatment: The ground lithium molecular sieve requires product treatment, including packaging, testing, analysis, and storage. The detection mainly includes physical and chemical properties, such as the adsorption performance of molecular sieves, specific surface area, pore size distribution, and other indicators. The analysis is to analyze and evaluate the structure and performance of molecular sieves to understand their application field and use effect. Storage is to ensure the quality and stability of the product, which usually needs to be stored in a dry, cool place, to avoid the influence of factors such as moisture and oxidation.

It should be noted that the production method of lithium molecular sieve OX-100 is more complex, and the reaction conditions and parameters of each step need to be strictly controlled to obtain high-quality products. In addition, the production process needs to pay attention to safety and environmental protection and take appropriate measures to ensure the safety and environmental protection of the production process.

In addition to traditional production methods, new technologies or improved processes are also used to produce lithium molecular sieve OX-100. For example, microwave-assisted technology can promote the synthesis reaction and improve molecular sieves' production efficiency and quality. Ultrasonic technology can improve the crystal structure and pore structure of molecular sieves and improve its adsorption and separation capacity. New catalysts or additives can also be used in the synthesis process to improve the performance of molecular sieves or reduce production costs.


Package of Lithium Molecular Sieve TROX-100 Series
55 gallon sealed steel drum, lined with aluminum foil bag, net weight 125 kg per drum;
10 gallon sealed steel drum, lined with aluminum foil bag, net weight 25 kg per drum

Lithium Molecular Sieve TROX-100 Series supplier :

Luoyang Tongrun Nano Technology Co. Ltd. (TRUNNANO) is a trusted global chemical material supplier & manufacturer with over 12 years of experience in providing super high-quality chemicals and Nanomaterials, including boride powder, nitride powder, graphite powder, sulfide powder, 3D printing powder, etc.

If you are looking for high-quality Lithium Molecular Sieve TROX-100 Series, please feel free to contact us and send an inquiry. ([email protected])

Lithium Molecular Sieve TROX-100 Properties

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Solubility in H2O N/A
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Lithium Molecular Sieve TROX-100 Health & Safety Information

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Transport Information
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