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Hydrogen production electrolysis unit 2MW
green hydrogenmembranePEM

Hydrogen production electrolysis unit - 2MW - IMI Critical Engineering - green hydrogen / membrane / PEM
Hydrogen production electrolysis unit - 2MW - IMI Critical Engineering - green hydrogen / membrane / PEM
Hydrogen production electrolysis unit - 2MW - IMI Critical Engineering - green hydrogen / membrane / PEM - image - 2
Hydrogen production electrolysis unit - 2MW - IMI Critical Engineering - green hydrogen / membrane / PEM - image - 3
Hydrogen production electrolysis unit - 2MW - IMI Critical Engineering - green hydrogen / membrane / PEM - image - 4
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Characteristics

Applications
for hydrogen production, green hydrogen
Technology
membrane, PEM
Other characteristics
on site
Power consumption

2,160 kW
(2,937 hp)

Flow rate

Max.: 400 m³/h
(14,125.867 ft³/h)

Min.: 40 m³/h
(1,412.587 ft³/h)

Hydrogen purity

99.999 %

Hydrogen outlet pressure

40 bar
(580 psi)

Description

Product Overview The IMI VIVO 2MW PEM electrolyser is a modular, containerised solution for industrial green hydrogen production. It delivers up to 400 Nm³/h of hydrogen, supports H₂ purity up to 99.999% with an integrated purifier, and operates across a flexible 10–100% dynamic range. The unit features a cold start time <5 minutes, a containerised skid footprint for transport and simplified installation, and provisions for remote/cloud monitoring and diagnostics.

Real-Time Monitoring Dashboard The system includes a cloud-connected dashboard for live monitoring of flow, pressure, temperature, efficiency and operational metrics. Accessible via Wi‑Fi or mobile data, it supports remote diagnostics, data logging, alarm management and performance optimisation to integrate with site energy management.

Hydrogen Storage Integration The electrolyser is compatible with modular, containerised hydrogen storage units (scalable) with design pressures up to 40 bar(g). Integration options include buffering, peak shaving and distribution configurations for mobility refuelling or industrial supply chains.

Key features
  • Output: up to 400 Nm³/h H₂
  • H₂ Purity: 99.999% (with purifier)
  • Ramp-up (cold): <5 minutes
  • Operating (dynamic) range: 10–100%
  • Maximum power consumption: ~57 kWh/kg (main description) / 58 kWh/kg (specifications table)
  • Maximum H₂ pressure: 40 bar(g)
  • O₂ pressure: <2 bar(g); O₂ purity: 99%
  • Skid footprint: primary skid 8 x 40 x 8 ft; additional unit 20 x 8 x 8 ft (containerised)
  • Interfaces: Modbus, TCP/IP
  • Electrical: MV / 50 Hz / 2.16 MW
  • Water supply requirement: 800 l/h
  • Communication: 24/7 data acquisition, remote and wireless monitoring
  • Scalable, modular design for integration with renewable energy sources


Technical specifications
  • Maximum Power Consumption (kWh/kg): 58 (specifications table) — 57 kWh/kg noted in product overview
  • H₂ Purity: Over 99.999% (with purifier)
  • Cold Ramp Up Time: <5 min
  • H₂ Pressure (bar(g)): 40
  • Dynamic Range: 10 to 100 %
  • Water Supply: 800 l/h
  • O₂ Pressure: <2 bar(g)
  • O₂ Purity: 99%
  • Interfaces: Modbus and TCP/IP
  • Electrical Loads: MV / 50 Hz / 2.16 MW
  • Communication: 24/7 data acquisition and remote monitoring
  • Size (ft): primary skid 8 x 40 x 8; additional unit 20 x 8 x 8
  • Output capacity: up to 400 Nm³/h H₂

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*Prices are pre-tax. They exclude delivery charges and customs duties and do not include additional charges for installation or activation options. Prices are indicative only and may vary by country, with changes to the cost of raw materials and exchange rates.