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RANGE : |
WM-H2 |
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APPLICATIONS : |
GC - FID , GC - NPD , GC - FPD , GC - TCD , GC , GC-MS , ICP-MS , COLISION CELL , THA , HYDROGENATION , FAST-GC , FUEL CELL |
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GAZ TYPE : |
HYDROGEN |
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TECHNOLOGY : |
AUTO-DRYING TECHNOLOGY |
COMMENT : |
High Purity Hydrogen generator with auto-drying technology
The WM-H2 series hydrogen generators use the latest polymer electrolyte membrane (PEM) technology to produce pure hydrogen. 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. |
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RANGE : |
PAR-H2 |
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APPLICATIONS : |
GC - FID , GC - NPD , GC - FPD , GC - TCD , GC , GC-MS , ICP-MS , COLISION CELL , THA , HYDROGENATION , FAST-GC , FUEL CELL |
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GAZ TYPE : |
HYDROGEN |
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TECHNOLOGY : |
PROGRAMMABLE AUTO REGENERATION CARTRIDGE |
COMMENT : |
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. |
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RANGE : |
ND-H2 |
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APPLICATIONS : |
GC - FID , GC - NPD , GC - FPD , GC - TCD , THA , FUEL CELL |
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GAZ TYPE : |
HYDROGEN |
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TECHNOLOGY : |
DESSICANT CARTRIDGE |
COMMENT : |
Hydrogen generator with dessicant cartridge
The ND-H2 series 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. |
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RANGE : |
LC-H2 |
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APPLICATIONS : |
GC - FID , GC - NPD , GC - FPD , GC - TCD , THA , FUEL CELL |
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GAZ TYPE : |
HYDROGEN |
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TECHNOLOGY : |
DESSICANT CARTRIDGE |
COMMENT : |
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. |
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RANGE : |
RACK-WM-H2 |
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APPLICATIONS : |
GC - FID , GC - NPD , GC - FPD , GC - TCD , GC , GC-MS , ICP-MS , COLISION CELL , THA , HYDROGENATION , FAST-GC , FUEL CELL |
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GAZ TYPE : |
HYDROGEN |
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TECHNOLOGY : |
AUTO-DRYING TECHNOLOGY |
COMMENT : |
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. |
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RANGE : |
RACK-ND-H2 |
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APPLICATIONS : |
GC - FID , GC - NPD , GC - FPD , GC - TCD , THA , GC |
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GAZ TYPE : |
HYDROGEN |
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TECHNOLOGY : |
DESSICANT CARTRIDGE |
COMMENT : |
Rackable Hydrogen generator with dessicant cartridge
The RACK-H2 hydrogen generators use the latest polymer electrolyte membrane (PEM) technology to produce pure hydrogen.
The ND-H2 series 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. |
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RANGE : |
WM-H2/AIR |
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APPLICATIONS : |
GC - FID , GC - NPD , GC - FPD , GC - TCD , GC , GC-MS , ICP-MS , COLISION CELL , THA , HYDROGENATION , FAST-GC , FUEL CELL |
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GAZ TYPE : |
HYDROGEN / ZERO AIR |
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TECHNOLOGY : |
AUTO-DRYING TECHNOLOGY |
COMMENT : |
Hydrogen generator WM series combined with zero air generator
This unit can provide both hydrogen gas and zero grade air. Hydrogen gas is produced from deionised water using a Proton Exchange Membrane Technology. Zero air is produced by purifying compressed air sourced from the air network to a total hydrocarbon concentration of < 0.05 ppm (measured as methane). This unit combine the hydrogen serie WM-H2 and Zero air serie ZA generators in one unit. Units are complete systems with highly reliable components engineered for easy installation, operation, and long term performance. |
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RANGE : |
PAR-H2/AIR |
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APPLICATIONS : |
GC - FID , GC - NPD , GC - FPD , GC - TCD , GC , GC-MS , ICP-MS , COLISION CELL , THA , HYDROGENATION , FAST-GC , FUEL CELL |
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GAZ TYPE : |
HYDROGEN / ZERO AIR |
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TECHNOLOGY : |
PROGRAMMABLE AUTO REGENERATION CARTRIDGE |
COMMENT : |
Hydrogen generator PAR series combined with zero air generator
This unit can provide both hydrogen gas and zero grade air. Hydrogen gas is produced from deionised water using a Proton Exchange Membrane Technology. Zero air is produced by purifying compressed air sourced from the air network to a total hydrocarbon concentration of < 0.05 ppm (measured as methane). This unit combine the hydrogen serie PAR-H2 and Zero air serie ZA generators in one unit. Units are complete systems with highly reliable components engineered for easy installation, operation, and long term performance. |
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RANGE : |
ND-H2/AIR |
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APPLICATIONS : |
GC - FID , GC - NPD , GC - FPD , GC - TCD , THA , FUEL CELL |
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GAZ TYPE : |
HYDROGEN / ZERO AIR |
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TECHNOLOGY : |
DESSICANT CARTRIDGE |
COMMENT : |
Hydrogen generator ND series combined with zero air generator
This unit can provide both hydrogen gas and zero grade air. Hydrogen gas is produced from deionised water using a Proton Exchange Membrane Technology. Zero air is produced by purifying compressed air sourced from the air network to a total hydrocarbon concentration of < 0.05 ppm (measured as methane). This unit combine the hydrogen serie ND-H2 and Zero air serie ZA generators in one unit. Units are complete systems with highly reliable components engineered for easy installation, operation, and long term performance. |
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RANGE : |
FID-H2/AIR |
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APPLICATIONS : |
GC - FID |
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GAZ TYPE : |
HYDROGEN / ZERO AIR |
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TECHNOLOGY : |
DESSICANT CARTRIDGE |
COMMENT : |
FID station with hydrogen generator combined with zero air generator
This unit can provide both hydrogen gas and zero grade air to FID detectors on Gas Chromatographs. Hydrogen gas is produced from deionised water using a Proton Exchange Membrane Technology. Zero air is produced by purifying compressed air sourced from the air network to a total hydrocarbon concentration of < 0.05 ppm (measured as methane). The H2/AIR FID Station combine the hydrogen serie FID-LC-H2 and Zero air serie ZA generators in one unit. Units are complete systems with highly reliable components engineered for easy installation, operation, and long term performance. |
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