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PEM Hydrogen Production Testing System

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The PEM Hydrogen Production Testing System is a high-efficiency evaluation platform based on Proton Exchange Membrane (PEM) technology. Designed for research institutions, hydrogen equipment manufacturers, and renewable energy enterprises, this system precisely simulates real-world operating conditions to comprehensively assess electrolyzer performance, hydrogen production efficiency, dynamic response, and long-term stability. It provides reliable data to optimize hydrogen production processes, validate new materials, and accelerate industrial applications.

Product Category:

Testing Instrument

  • Test equipment
    • LD-HP-002 25 kW LD-HP-002 25 kW
    • LD-HP-020 100 kW LD-HP-020 100 kW

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Product Details


Technical Parameters

CategoryProduct ModelLD-HP-002LD-HP-020
Basic PerformanceHydrogen Production Rate5 Nm³/h20 Nm³/h
Hydrogen Production Pressure1-3.0MPa1-3.0MPa
Electrolysis Efficiency≥80%≥80%
Current Density2-3 A/cm22-3 A/cm2
Hydrogen Purity99.999%99.999%
Electrolyzer Core MaterialMembrane Electrode Assembly (MEA)Low iridium catalyst with an area of 100 to 600 cm² and a lifetime of> 80,000 hoursLow iridium catalyst with an area of 100 to 600 cm² and a lifetime of> 80,000 hours
Proton Exchange MembranePerfluorosulfonic Acid Membrane (PFSA), corrosion-resistantPerfluorosulfonic Acid Membrane (PFSA), corrosion-resistant
Operating Temperature60~80°C60~80°C
Input and Energy ConsumptionInput PowerDirect Current (DC), compatible with wind and solar power generationDirect Current (DC), compatible with wind and solar power generation
Unit Energy Consumption≤4.3 kWh/Nm³ H₂≤4.3 kWh/Nm³ H₂
Deionized Water RequirementResistivity ≥2MΩ·cm, flow rate 0.5~50 L/hResistivity ≥2MΩ·cm, flow rate 0.5~50 L/h
Control and Safety Control SystemControl SystemPLC controlPLC control
Safety ProtectionOvervoltage/overcurrent/over-temperature protection, hydrogen leakage detection, N₂ purgingOvervoltage/overcurrent/over-temperature protection, hydrogen leakage detection, N₂ purging

 

Core Advantages

 High-Performance PEM Electrolysis Stack

Utilizes ultra-thin titanium-based bipolar plates and low-platinum-loading membrane electrode assemblies (MEAs) to achieve high current density (≥2 A/cm²) and low energy consumption (≤4.3 kWh per Nm³ of hydrogen).

 Modular Design

Supports single-cell, short-stack, and full-scale electrolyzer testing, making it adaptable for both laboratory research and pilot-scale validation.

 Intelligent Control System

Equipped with a high-precision power supply, gas mass flow meters, and an electrochemical workstation, integrating a PLC and upper-level control system for automated data collection and remote monitoring.

 Renewable Energy Compatibility

Designed to operate seamlessly with fluctuating DC power inputs from photovoltaic and wind energy sources, enabling direct integration with renewable energy systems.

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