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Shanghai Xuansheng Scientific Instrument Co., Ltd

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    1011090186@qq.com

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    18701981667

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    2nd Floor, 2900 Nanxinggang Road, Fengxian District, Shanghai

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High purity hydrogen generator gas chromatograph high-purity gas source

NegotiableUpdate on 01/07
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Overview
High purity hydrogen generator gas chromatograph Working principle of high-purity gas source: $r $n $r $n The hydrogen generator electrolyzes an aqueous solution under the action of direct current to obtain hydrogen and oxygen. Oxygen is generated at the anode and is directly discharged; Hydrogen gas is generated at the cathode and filtered to remove moisture, resulting in high-purity hydrogen gas. Hydrogen gas is controlled by a photoelectric coupler to output pressure and the required hydrogen gas flow rate for gas chromatography instruments. Produce a high-purity hydrogen generator with stable pressure and flow rate that meets the requirements of gas chromatography instruments based on the above principles.
Product Details

High purity hydrogen generator gas chromatograph high-purity gas source


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High purity hydrogen generator gas chromatograph high-purity gas source

The use of hydrogen generators can replace high-pressure steel cylinders and make laboratories more instrument oriented. Hydrogen generators have the characteristics of small volume, light weight, low-pressure gas production, safety and reliability, high hydrogen purity, and automatic tracking of required hydrogen flow rate, making them an ideal hydrogen supply source for laboratories. A hydrogen generator is an environmentally friendly alternative to gas cylinders, as once installed, the generator does not need to leave the laboratory to provide gas for laboratory applications, and all maintenance is carried out in the laboratory. This generator also reduces the carbon footprint of your laboratory, as there is no need to transport replacement cylinders and remove empty cylinders by truck.

The function of hydrogen generator

The use of hydrogen generators can replace high-pressure steel cylinders and make laboratories more instrument oriented. Hydrogen generators have the characteristics of small volume, light weight, low-pressure gas production, safety and reliability, high hydrogen purity, and automatic tracking of required hydrogen flow rate, making them an ideal hydrogen supply source for laboratories. The hydrogen generator is equipped with anti liquid equipment and anti liquid system, which eliminates the phenomenon of liquid return caused by misoperation, ensures the safe operation of the instrument, and makes the instrument more stable, reliable, safe, and easy to operate.

Characteristics of hydrogen generator instrument:

Adopting a barrel shaped electrolytic cell, it has the advantages of large electrolysis area, low cell temperature, high gas production, and high purity.

The gas system is equipped with an alkali reflux device and a gas automatic control system.

Low cell voltage, high hydrogen purity, long desiccant replacement cycle

The electrolysis current is small, but the gas production is sufficient and the voltage rise is fast(35Minutes)

Stable hydrogen pressure and flow output, and automatic tracking with changes in load gas consumption

High voltage stabilization accuracy, complete and reliable automatic protection technologies for water shortage, overvoltage, waterproof flushing, etc

Low noise (the fan hardly starts when used by the user)

High electrolysis efficiency and low power consumption

undertake Nuo: The whole machine comes with a one-year warranty.




Safe use and safe dischargeSafe emissions
hydrogenFlammable and explosive, the carrier gas should be discharged outdoors. If the detector used has flames, such as FID or PFPD, hydrogen gas is generally not selected as the carrier gas unless it is to optimize the sensitivity of the detector.
argonIt is non-toxic, but has a suffocating effect at high concentrations. When the concentration of argon gas in the air exceeds 33%, there is a risk of suffocation. When the concentration of argon gas exceeds 50%, people will experience severe symptoms, and when the concentration reaches 75% or more, people can die within minutes. When using argon gas, because its density is much higher than the average density of air, it is not easy to directly discharge it outdoors. Therefore, when other gases can be used as substitutes, argon gas is generally not used.