EnOxy Oxygen | Membrane Modules

EnOxy Oxygen | Membrane Modules

Hollow-fibre membrane modules that produce oxygen enriched air (up to 40% purity) from compressed air.

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Description

EnOxy 6010
Oxygen Membrane Module

Parker hollow-fibre membrane modules produce oxygen enriched air from compressed air to offer a cost effective, reliable and safe alternative to traditional oxygen gas supplies. Parker modules can be built into a custom-made oxygen generator or can be integrated with your process to provide an on-demand, continuous source of oxygen gas. Oxygen enriched air is used in many health and wellness related applications such as nitrox diving, oxygen bars and oxygen training rooms.

 

Benefits

  • Less membrane modules needed per enrichment system
    • More enriched air per fibre is produced from Parker hollow-fibre membranes than any other in the world
  • Use of low pressure standard industrial compressor
    • No high pressure compressor needed to obtain required enriched-oxygen flow
  • Energy savings
    • Operation at a low pressure requires less energy
  • Reduced CO2 emissions
    • No heater required to open polymer membrane structure, thus reducing the energy consumption
  • Robust fibre
    • Most tolerant fibre to particle contamination
  • Large membrane diameter
    • Lowest membrane module pressure drop
  • Factory membrane ageing, pre- delivery
    • No performance decrease over time due to fibre ageing
  • Quick start-up time
    • Required enriched-oxygen purity is  produced instantly, no time needed to heat-up
  • Flexible mounting arrangements
    • Can be mounted horizontal or vertical
  • Low noise operation
    • Radiated noise generated by membrane technology is extremely low
  • No maintenance required
    • No user serviceable parts
  • Small system footprint
    • Less modules needed to produce oxygen enriched air requirements

 

 

Note
Parker membrane systems produce both nitrogen and oxygen enriched air. Nitrogen enriched air can cause suffocation and oxygen enriched air causes increased fire hazards. The oxygen enriched air is available at ambient pressure and pressure build-up of enriched oxygen at the outlet must be prevented, otherwise a serious (reversible) decrease in performance will result. The nitrogen enriched air produced should be treated as pressurised air.

 

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