Molecular sieve, commonly known as "Moresi."
Here, the "Moresi" refers to oxygen Moresi, which can separate oxygen and nitrogen in the air.
There are the following types of oxygen molecular sieves: 1. Activated carbon-based molecular sieve 99.9% 2. Zeolite-based molecular sieve 93% 3. Lithium zeolite-based molecular sieve 95% The percentages indicate the concentration of separated oxygen.
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basic information
Performance) 1. Activated Carbon-based Moresi 99.9% Dust content: 100 ppm, Compressive strength: 100 N/particle, Moisture: 0.5%, Material: Phenol activated carbon, Particle size: 1.1 to 1.6 mm, Apparent specific gravity: 0.7 kg/L 2. Zeolite-based Moresi 93% Wear rate: ≦0.2%, Compressive strength: 25 N/particle, N2/O2 separation: ≧3, N2 capacity: 8 ml/g, Moisture: 1%, Material: Synthetic zeolite, Particle size: 0.6 to 2.4 mm, Apparent specific gravity: 0.75 kg/L 3. Lithium Zeolite-based Moresi 95% Wear rate: ≦1%, Compressive strength: 25 N/particle, N2/O2 separation: ≧6, Static N2 adsorption: 0.22, Moisture: 1%, Material: Lithium synthetic zeolite, Particle size: 0.6 to 2 mm, Apparent specific gravity: 0.7 kg/L
Price information
Due to the variety, the Morisy price is listed on the φ75 oxygen concentrator parts upper price table - optional paid parts - sieve page.
Price range
P1
Delivery Time
P4
Applications/Examples of results
- A device that can separate oxygen and nitrogen from the air using the PSA method (there is also a membrane permeation separation method). - = PSA nitrogen generator, PSA oxygen concentrator, PSA oxygen respirator, etc. - The principle of air separation by PSA adsorption method: pressure swing adsorption. Oxygen molecules are smaller in molecular diameter than nitrogen molecules → utilizing this fact → oxygen molecules pass through → nitrogen molecules do not pass → prepare a molecular sieve with precise pore diameter for selective adsorption → fill two adsorption towers → send oil-free compressed air from an oil-free air compressor into one adsorption tower → only oxygen is selectively adsorbed → the nitrogen that is not adsorbed is discharged → switch the airflow direction to the other adsorption tower using a solenoid valve → the first adsorption tower returns to atmospheric pressure → at that time, the selectively adsorbed oxygen is released → repeating this operation with the two adsorption towers results in the separation of oxygen and nitrogen (see oxygen concentrator). - Components of air: 78% nitrogen, 21% oxygen, 0.04% CO2.
Detailed information
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Activated carbon-based Moresi 99.9%
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Zeolite-based Morishi 93%
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Lithium zeolite-based Morecy 95%
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Image of oxygen-nitrogen separation by Morecy Components of air: 78% nitrogen, 21% oxygen, 0.04% CO2
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Porous structure
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Cargo appearance
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Molecular Sieve Price List
Company information

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