High-purity high-pressure gas is widely used in production and experiments. The gas booster can help users obtain high-purity and high-pressure gas safely and at a low cost. So how does it ensure gas purity while compressing the gas?

- The gas booster uses compressed air to push the small piston to reciprocate, so as to drive the large piston to move synchronously. The large piston will continuously compress the gas during the reciprocating motion, thereby continuously increasing the gas pressure. Gas booster utilizes compressed air as the power force, and does not require electricity, thus avoiding the risk of electric sparks igniting the gas, so it is explosion-proof. Not only that, it also uses the exhaust air as a coolant to cool itself and the high-pressure gas without the need for additional oil cooling or water cooling, thereby reducing the source of pollution.
- The gas booster consists of two sections: the driving cylinder and the high-pressure cylinder. The gas medium runs in a closed manner in the high-pressure cylinder, while the compressed air runs in the driving cylinder. The high pressure cylinder and the driving cylinder are isolated from each other, that is, the gas medium and the compressed air are isolated from each other. Therefore, it avoids the possibility of gas being contaminated by compressed air or outside air.
- Oil-free compression is adopted, and all components in the high-pressure cylinder are degreased, thus avoiding the possibility of gas medium contamination in the high-pressure cylinder.
In a word, the gas booster can not only pressurize gas to maximal 160MPa, but also ensure that the purity of the high-pressure gas. For special gases, we have developed oxygen booster, hydrogen booster, CNG booster and more for users choice. In order to meet users’s dual demands on gas pressure and gas flow, we supply five series and multiple models of gas boosters for users to choose from.






