The Energy Recovery PX Q300 Pressure Exchanger® is a positive-displacement energy recovery device for seawater reverse osmosis. A single ceramic rotor transfers pressure energy directly from the high-pressure reject stream to the incoming feed, at up to 98% peak efficiency, handling 200 - 300 gpm (45 - 68m3/h) per device. There is no gearbox, no pistons and no lubricating oil — the rotor is the only moving part.
Documentation & Drawings
Technical Specifications
| Operating Conditions | |
| Service | 3. Reference |
| Liquid | Seawater |
| Flow range | 200 - 300 gpm (45 - 68m3/h) |
| Maximum high-pressure inlet flow | 300 gpm (68 m3/h) |
| Maximum low-pressure outlet flow | 300 gpm (68 m3/h) |
| Maximum inlet high pressure | 1200 psi (82.7 bar) |
| Maximum inlet low pressure | 145 psi (10 bar) |
| Minimum discharge pressure | 12 psi (0.8 bar) |
| Operating temperature | 33°F-120°F (0.6-49°C) |
| Maximum temperature | 120°F (49°C) |
| Specific gravity | 1.03 |
| Viscosity | 1.060 cP @ 70°F (21.1°C) |
| Filtration requirement (nominal) | 20 µm |
| Performance | |
| Peak efficiency | 98% |
| Warranted efficiency | 97.2% at standard conditions |
| Maximum high-pressure differential | 14.5 psi (1 bar) @ 300 gpm |
| Maximum low-pressure differential | 14.5 psi (1 bar) @ 300 gpm |
| Maximum lubrication flow | 4.4 gpm (1 m3/h) @ 300 gpm |
| Maximum rotational speed | 640 rpm @ 300 gpm |
| Noise per ISO 3744 | Less Than 85 dB(A) |
| Materials of Construction | |
| Housing | GRP |
| Rotor, sleeve & endcover assembly | Ceramic-alumina |
| Port fittings | Superduplex (S32750 OR S32760) 71 PX-Q300 unit Shipping Weight 210 lbs. (95 kg) |
| Internal low-pressure interconnector | Titanium |
| Tension rod assembly | AL-6XN* / C-276 / SUPER DUPLEX |
| Fasteners & hardware (non-wetted) | 316SS |
| O-rings | EPDM |
| Shipping Weight & Dimensions | |
| Cartridge weight | 49 lbs. (22 kg) |
| Identification | |
| Manufacturer | Energy Recovery, Inc. (San Leandro, CA) |
| Model | PX-Q300 |
| Data sheet reference | ERI 80315-01 |
How the PX Pressure Exchanger Works
A ceramic rotor turns inside a sleeve. Each duct is alternately opened to the high-pressure brine leaving the membranes and to the low-pressure feed entering the system. The high-pressure stream pushes directly against the feed water inside the duct, transferring its pressure with almost no loss; the duct then rotates, the depressurised stream is flushed to drain, and the cycle repeats. Because the transfer is direct hydraulic displacement rather than a mechanical conversion, efficiency is very high and the only moving part is the rotor.
Watch the PX in Operation
Video courtesy of Energy Recovery, Inc.
Where the PX-Q300 Fits
The PX-Q300 is specified on brine (concentrate) flow, not permeate — the pressure exchanger sits on the reject stream. ERI rates it for 200–300 gpm of brine at up to 1,200 psi, at 98% efficiency.
At the 40–45% recovery typical of seawater systems, one unit at full flow supports roughly 288,000–353,455 GPD of permeate (1,090–1,338 m³/day). That places a single PX-Q300 in municipal supply for towns and districts, industrial process water, power-station make-up, and mining operations.
PX units are installed in parallel arrays, so larger plants simply use more of them — four PX-Q300 units cover about 4,361–5,352 m³/day on the same basis. Below 200 gpm of brine, step down to a smaller model rather than run this one under its minimum.
Capacity figures are indicative, derived from the rated brine flow at typical recovery. Actual output depends on your feed salinity, temperature, membrane configuration and recovery rate — send us your design conditions and we will confirm the model and the number of units.
Frequently Asked Questions
How many PX-Q300 units do I need?
What pre-filtration is required?
Does it need a motor?
What maintenance is involved?
How much energy does it save?
Specifications reproduced from the Energy Recovery technical data sheet for this model. PX® and Pressure Exchanger® are registered trademarks of Energy Recovery, Inc. ERI reserves the right to make specification changes without prior notice; confirm critical values against the current data sheet before purchase.