Model |
Nominal free oxygen delivery (Nm3/h) |
||
|---|---|---|---|
90% |
93% |
95% |
|
PPOG 2 HE |
3.3 |
3.0 |
2.5 |
PPOG 4 HE |
6.6 |
6.0 |
5.1 |
PPOG 5 HE |
10.0 |
9.4 |
8.3 |
PPOG 7 HE |
13.3 |
12.5 |
11.1 |
PPOG 9 HE |
16.6 |
15.7 |
13.9 |
PPOG 10 HE |
19.7 |
18.1 |
15.2 |
PPOG 14 HE |
26.3 |
24.1 |
20.3 |
PPOG 18 HE |
32.9 |
30.2 |
25.3 |
The PPOG 2–18 HE uses Pressure Swing Adsorption to separate oxygen from other gases in compressed air.
Step 1 – Air Intake
Clean, treated compressed air enters the oxygen generator.
Step 2 – Molecular Separation
Air passes through vessels containing Zeolite Molecular Sieves.
Step 3 – Nitrogen Adsorption
The zeolite selectively adsorbs nitrogen and other gases.
Step 4 – Oxygen Concentration
Oxygen passes through as the product gas.
Step 5 – Regeneration
The vessels alternate between pressure levels to regenerate the zeolite for continuous operation.
Step 6 – Oxygen Delivery
The generated oxygen is delivered at the selected purity and required flow
The PPOG 2–18 HE combines efficient PSA technology, intelligent monitoring and compact installation for dependable on-site oxygen generation.
High-Purity Oxygen
Produces oxygen with purity up to 95% for demanding industrial applications.
Advanced PSA Cycle
High-performance Zeolite Molecular Sieves improve separation efficiency and oxygen output.
Lower Energy Consumption
Advanced design delivers up to 30% lower energy consumption than traditional oxygen generators.
Variable Flow Saver
Reduces energy consumption further during periods of low oxygen demand.
Zirconia Oxygen Sensors
Accurately monitor oxygen purity for consistent gas quality and reliable operation.
Purelogic Touch Controller
Provides control and monitoring of oxygen flow, purity and pressure, with optional remote connectivity.
Oil-Injected, Rotary Screw Compressor
Oil-Injected, Rotary Screw Compressor
Oil-Injected, Rotary Screw Compressor
Oil-Injected, Rotary Screw Compressor
Oil-Injected, Rotary Screw Compressor