Industrial gas production equipment

select brand


F-DGSi

Ultra high-purity hydrogen gas generator / for laboratories / automatic - 120 - 1 000 cm³/min, 1 - 12 bar | PAR-H2 series

High Purity Hydrogen generator with programmable auto regeneration cartridge The PAR-H2 series hydrogen generators use the latest polymer electrolyte membrane...

Ultra high-purity hydrogen gas generator / for laboratories / automatic - 120 - 1 000 cm³/min, 1 - 12 bar | PAR-H2 series

High Purity Hydrogen generator with programmable auto regeneration cartridge The PAR-H2 series hydrogen generators use the latest polymer electrolyte membrane (PEM) technology to produce pure hydrogen. The unit use a single column dryer with programmable automatic regeneration via integrated calendar events. Hydrogen is produced using deionised water from hydrolysis, through a polymer membrane. Electrolytic dissociation separates the water into its two main components: hydrogen ready for analytical use, and oxygen that is released into the air. No acid nor alkaline solutions are used in the hydrogen generation cycle.

Ultra high-purity hydrogen gas generator / for laboratories / automatic - 120 - 500 cm³, 1 - 10 bar | ND-H2 series

High Purity Hydrogen generator with programmable auto regeneration cartridge The PAR-H2 series hydrogen generators use the latest polymer electrolyte membrane...

Ultra high-purity hydrogen gas generator / for laboratories / automatic - 120 - 500 cm³, 1 - 10 bar | ND-H2 series

High Purity Hydrogen generator with programmable auto regeneration cartridge The PAR-H2 series hydrogen generators use the latest polymer electrolyte membrane (PEM) technology to produce pure hydrogen. The unit use a single column dryer with programmable automatic regeneration via integrated calendar events. Hydrogen is produced using deionised water from hydrolysis, through a polymer membrane. Electrolytic dissociation separates the water into its two main components: hydrogen ready for analytical use, and oxygen that is released into the air. No acid nor alkaline solutions are used in the hydrogen generation cycle.

Laboratory hydrogen gas generator - 100 - 180 cm³/min, 7 bar | LC-H2 series

Mini Hydrogen generator with dessicant cartridge The LC-H2 hydrogen generators use the latest polymer electrolyte membrane (PEM) Technology to produce...

Laboratory hydrogen gas generator - 100 - 180 cm³/min, 7 bar | LC-H2 series

Mini Hydrogen generator with dessicant cartridge The LC-H2 hydrogen generators use the latest polymer electrolyte membrane (PEM) Technology to produce pure hydrogen. The unit use a desiccant cartridge which needs to be refilled or replaced when saturated. Hydrogen is produced using deionised water from hydrolysis, through a polymer membrane. Electrolytic dissociation separates the water into its two main components: hydrogen ready for analytical use, and oxygen that is released into the air. No acid nor alkaline solutions are used in the hydrogen generation cycle.

Laboratory hydrogen gas generator - 180 - 1 200 cm³/min, 12 bar | RACK-WM/ND-H2 series

Rackable hydrogen generator with auto-drying technology The RACK-H2 hydrogen generators use the latest polymer electrolyte membrane (PEM) technology to produce pure hydrogen. The WM-H2...

Laboratory hydrogen gas generator - 180 - 1 200 cm³/min, 12 bar | RACK-WM/ND-H2 series

Rackable hydrogen generator with auto-drying technology The RACK-H2 hydrogen generators use the latest polymer electrolyte membrane (PEM) technology to produce pure hydrogen. The WM-H2 series use the exclusive double gas column dryer regeneration system eliminates all down time for maintenance that is typical of other systems on the market, guaranteeing the best hydrogen purity at all times. Hydrogen is produced using deionised water from hydrolysis, through a polymer membrane. Electrolytic dissociation separates the water into its two main components: hydrogen ready for analytical use, and oxygen that is released into the air. No acid nor alkaline solutions are used in the hydrogen generation cycle.

LC MS nitrogen gas generator / laboratory - 12 - 64 l/min, 5.5 - 7 bar | MAESTRO series

PSA LCMS Nitrogen Gas Generators The LC-MS analysers do not all share the same requirements in terms of type, flow rate, pressure and purity of the gases needed for their operation. That’s why the MAESTRO LCMS series was created to meet the needs of all...

LC MS nitrogen gas generator / laboratory - 12 - 64 l/min, 5.5 - 7 bar | MAESTRO series

PSA LCMS Nitrogen Gas Generators The LC-MS analysers do not all share the same requirements in terms of type, flow rate, pressure and purity of the gases needed for their operation. That’s why the MAESTRO LCMS series was created to meet the needs of all...
AGC Instruments Ltd.

Carrier gas purifier - 75-804

The new automated 19 Rack Carrier Gas Purifier from AGC Instruments provides a dependent supply of high purity gas. It is one of two configurations available for easy integration into a new or existing set-up to work in tandem with numerous applications. The new rack configuration links seamlessly with the new NovaCHROM Gas Chromatograph...

Carrier gas purifier - 75-804

The new automated 19 Rack Carrier Gas Purifier from AGC Instruments provides a dependent supply of high purity gas. It is one of two configurations available for easy integration into a new or existing set-up to work in tandem with numerous applications. The new rack configuration links seamlessly with the new NovaCHROM Gas Chromatograph and TrendVision PLUS Chromatography Software unit for a comprehensive gas analysis rack system.

It supplies the essential high purity gas supply which is necessary to run sensitive Ionisation Detectors such as the AGC Discharge Ionisation Detector (DID) and the AGC Argon Discharge Detector (ADD). These two detectors require pure Helium and pure Argon respectively and by having a low ppb impurity level in carrier and detector gases, longer instrument life spans and better sensitivities are achieved, thus saving companies both time and money.

The AGC Purifier is based on heating purifying pellets which have been coated with a thin oxide layer. When these pellets are heated, impurities in the gas stream passed over them are trapped. By continuously diffusing the impurities into the purifying material, a fresh reactive surface is maintained. This reaction will ensure that the output gas is produced at least 2 grades better than the input gas.
FerroCrtalic d.o.o.

CO2 recovery plant - RE80

The RE80 Recovery Unit collects all the "revert" gas that gets wasted during production of ice and then it...

CO2 recovery plant - RE80

The RE80 Recovery Unit collects all the "revert" gas that gets wasted during production of ice and then it is converted to liquid CO2. Thus, the cost of dry ice gets halved. Dry ice is generally produced by bringing the liquid CO2 up to atmospheric pressure where half of it turns into solid snow and the other half gets released into the atmosphere. The revolutionary new RE80 Recovery Unit is used for collecting and compressing the entire gas to liquid CO2.
{{item.name}}