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Shanghai Chuanhong Experimental Instrument Co., Ltd

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    2732299658@qq.com

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    18058412196

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    J, No. 912 Yecheng Road, Jiading Industrial Zone, Shanghai

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Low flow nitrogen generator membrane separation integrated nitrogen production

NegotiableUpdate on 01/27
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Overview
Low flow nitrogen generator membrane separation integrated nitrogen production is an excellent gas separation technology. High purity nitrogen is produced by separating air with membranes imported from Korea. The air is compressed and filtered by a compressor before entering a polymer membrane filter. Due to the different solubility and diffusion coefficients of various gases in the membrane, the relative permeation rates of different gases in the membrane are different. Under certain pressure conditions, different gases with different properties such as oxygen and nitrogen are used to separate oxygen and nitrogen in the membrane with different permeation rates.
Product Details

Low flow nitrogen generator membrane separation integrated nitrogen productionProduct features:

1. It can replace high-pressure nitrogen cylinders, making the laboratory instrument more efficient and ensuring safety.

2. The work process is fully automated, easy to operate, and convenient for daily maintenance.

3. Digital display of nitrogen production, facilitating observation of instrument working status and fault diagnosis.

4. Long lifespan, can be used continuously or intermittently, stable gas production, and does not decay.

5. Highly integrated modular structure design, saving laboratory space

6. The system is equipped with a built-in gas storage tank stabilizing unit and a safety valve design that meets international standards

7. Designed with movable casters for easy mobility.

小流量氮气发生器膜分离一体式制氮


Low flow nitrogen generator membrane separation integrated nitrogen productionTechnical Specifications:

model

AYAN-5L

Gas output

5L/min

Purity value

99%

pressure value

0-0.6mpa

filtration system

Level 3

Total power

1000W

Working Voltage

220V/50HZ

Overall dimensions

500*620*1060mm

As a commonly used gas in laboratories, nitrogen requires a relatively large amount, and how to produce high-purity nitrogen has become a crucial issue. In the past, due to technological backwardness, laboratories often used high-pressure nitrogen cylinders or liquid nitrogen tanks for gas supply. With the continuous development of science and technology, the emergence of this instrument has effectively solved this problem. It adopts gas separation technology, using imported carbon molecular sieves as adsorbents, and uses pressure swing adsorption principle to separate air at room temperature to produce high-purity nitrogen gas.
According to the principle of electrocatalytic air separation, the electrolytic cell is designed using the reverse process of fuel cells. As a pressure stable and pure raw material air enters the electrolytic cell, oxygen in the air is adsorbed at the cathode to obtain electrons, reacts with water to generate hydroxide ions, and migrates to the anode where it loses electrons and releases oxygen. Therefore, oxygen in the air is continuously separated. Only nitrogen gas is left to be output through the gas circuit. After further filtration, pressure stabilization, and flow stabilization treatment, high-purity nitrogen gas is obtained.
Preparation precautions:
(1) Before use, check if there are any debris blocking the air inlet and pay attention to cleaning.
(2) The sealing ring of the instrument piston has a certain lifespan. Please turn off the instrument promptly after use
(3) After using the instrument for a period of time, the electrolyte will gradually decrease. When the electrolyte approaches the lower limit, it should be replenished with water in a timely manner, and the upper limit should not be exceeded when adding liquid.
(4) Do not operate the nitrogen generator under load when it is not connected to an air source, otherwise it will cause the entire instrument to be scrapped.
(5) When transporting the instrument, use a pipette to clean the electrolyte in the storage tank, and then cover it with a lid to prevent residual electrolyte from overflowing during transportation, which could corrode the entire instrument and cause irreparable consequences.
(6) If the instrument is shut down for one month or more, please remove the electrolyte.