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The desalination energy recovery device is a core energy-saving component in reverse osmosis seawater desalination systems. It recovers residual pressure energy from high-pressure brine discharge and directly transfers it to incoming fresh seawater, significantly reducing the power consumption of the high-pressure pump. This device primarily utilizes pressure exchanger energy recovery technology. Through efficient "pressure energy to pressure energy" conversion without phase change, the overall system energy consumption is reduced, making it a key technology for promoting the large-scale and low-carbon development of seawater desalination.
iERD Series – Integrated Exchanger and Booster
iMPE Series – Active Pressure Energy Recovery
The iERD series desalination energy recovery device is designed for reverse osmosis seawater desalination systems of all sizes (including land-based, offshore, and mobile applications), ensuring stable membrane feed water flow under various operating conditions. This series equipment achieves an energy recovery efficiency of up to 92%. By directly transferring the residual high-pressure energy from the reverse osmosis wastewater to the feed water side, without requiring an additional high-pressure flow meter, it significantly reduces system energy consumption. The iERD is the industry's first 3-in-1 isobaric energy recovery system, integrating a rotary isobaric pressure exchanger, a high-pressure booster pump, and an electric motor.
Specifications
Type | iERD 21 Plus | iERD 40 | iERD 50 | iERD 70 | iERD 90 | |
---|---|---|---|---|---|---|
Flow range | m3/h | 6–22 | 21–41 | 42–52 | 50–70 | 70–90 |
gpm | 26–96 | 92–181 | 184–228 | 220–308 | 308–396 | |
Max. outlet pressure | barg | 83 | 83 | 83 | 83 | 70 |
psig | 1203 | 1203 | 1203 | 1203 | 1015 | |
Max. differential pressure: | barg | 5 | 5 | 5 | 5 | 5 |
psig | 72 | 72 | 72 | 72 | 72 | |
Speed | rpm | 500–1500 | 600–1200 | 525–650 | 625–875 | 625–875 |
The iMPE, constructed from a combination of stainless steel and polymer materials, is an active pressure energy recovery device designed for seawater desalination and industrial zero liquid discharge applications, offering several technical advantages. Its intelligent design eliminates the risk of rotor over-speeding, reduces mixing, and ensures efficient rotor operation even under step-out and torque impact conditions, thereby improving energy recovery efficiency, control performance, and system reliability. Moreover, the iMPE reduces the need for redundant traditional ERD configurations in large-scale plants, effectively lowering overall costs.
Furthermore, this device establishes a solid foundation for intelligent and automated systems, as well as more proactive maintenance.
Specifications
Type | Flow | Maximum Outlet Pressure | (Hp In-Hp Out) max. |
(Lp In-Lp Out) max. |
Speed |
---|---|---|---|---|---|
iMPE 21 | 6–22 m3/h | 1203 psig | 0.66 barg | 0.8 barg | 500–1500 rpm |
26–96 gpm | 9.6 psig | 11.6 psig | |||
iMPE 40 | 21–41 m3/h | 1203 psig | 0.7 barg | 0.8 barg | 600–1200 rpm |
92–181 gpm | 10.15 psig | 11.6 psig | |||
iMPE 50 | 42-52 m3/h | 1203 psig | 0.7 barg | 0.8 barg | 525–650 rpm |
184–228 gpm | 10.15 psig | 11.6 psig | |||
iMPE 70 | 50–70 m3/h | 1203 psig | 0.7 barg | 0.8 barg | 625–875 rpm |
220–308 gpm | 10.15 psig | 11.6 psig | |||
iMPE 90 | 70–90 m3/h | 1203 psig | 0.7 barg | 0.8 barg | 625–875 rpm |
308–396 gpm | 10.15 psig | 11.6 psig | |||
iMPE 110 | 80–110 m3/h | 1203 psig | 1 barg | 1 barg | 625–875 rpm |
352–484 gpm | 14.5 psig | 14.5 psig | |||
iMPE 140 | 100–140 m3/h | 1203 psig | 1 barg | 1 barg | 625–875 rpm |
440–616 gpm | 14.5 psig | 14.5 psig | |||
iMPE 21H | 6–22 m3/h | 120 barg | 1 barg | 1 barg | 500–1500 rpm |
26–96 gpm | 1740 psig | 14.5 psig | 14.5 psig | ||
iMPE 40 H | 21–41 m3/h | 120 barg | 1 barg | 1 barg | 600–1200 rpm |
92–181 gpm | 1740 psig | 14.5 psig | 14.5 psig | ||
iMPE 50 H | 42–52 m3/h | 120 barg | 1 barg | 1 barg | 525–650 rpm |
184–228 gpm | 1740 psig | 14.5 psig | 14.5 psig | ||
iMPE 70 H | 50–70 m3/h | 120 barg | 1 barg | 1 barg | 625–875 rpm |
220–308 gpm | 1740 psig | 14.5 psig | 14.5 psig | ||
iMPE 90H | 70–90 m3/h | 120 barg | 1 barg | 1 barg | 625–875 rpm |
308–396 gpm | 1740 psig | 14.5 psig | 14.5 psig | ||
iMPE 50L | 42–52 m3/h | 8–20 barg | 0.7 barg | 0.8 barg | 525–650 rpm |
184–228 gpm | 116–290 psig | 10.15 psig | 11.6 psig | ||
iMPE 70L | 50–70 m3/h | 8–20 barg | 0.7 barg | 0.8 barg | 625–875 rpm |
220–308 gpm | 116–290 psig | 10.15 psig | 11.6 psig | ||
iMPE 90L | 70–90 m3/h | 8–20 barg | 0.7 barg | 0.8 barg | 625–875 rpm |
308–396 gpm | 116–290 psig | 10.15 psig | 11.6 psig | ||
iMPE 110L | 80–110 m3/h | 8–20 barg | 0.7 barg | 0.8 barg | 625–875 rpm |
352–484 gpm | 116–290 psig | 10.15 psig | 11.6 psig | ||
iMPE 140L | 100–140 m3/h | 8–20 barg | 0.7 barg | 0.8 barg | 625–875 rpm |
440–616 gpm | 116–290 psig | 10.15 psig | 11.6 psig |
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