MEA Electrolysis Cell
MEA Electrolysis Cell

MEA Electrolysis Cell

Regular price $1,590.00
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MEA Electrolysis Cell

MEA Electrolysis Cell

Product Description
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Product Overview
The MEA Electrolysis Cell is a compact, high-performance electrochemical reactor designed around a membrane electrode assembly (MEA) architecture with bipolar plates. It is widely used in electrocatalysis, CO₂ electroreduction, water electrolysis, fuel cell research, and synthetic electrochemistry, where high current density, precise control, and long-term stability are required.
Key Advantages
Bipolar plate configuration Ensures uniform current distribution, low internal resistance, and excellent electrochemical stability.
Highly customizable flow fields Supports serpentine, parallel, leaf-vein, interdigitated, dot-matrix, and other flow-channel designs to optimize mass transport.
High sealing reliability Multi-O-ring sealing structure enables leak-free operation under continuous flow and elevated current.
Thermal control compatibility Integrated heating and temperature-measurement ports allow constant-temperature electrolysis experiments.
Broad MEA compatibility Suitable for PEM, AEM, and BPM membrane systems.
Technical Specifications (Standard Configuration)
Bipolar plate material: High-purity titanium or high-purity nickel (optional)
Reaction / flow area: 50 × 50 mm (customizable)
Flow channel type: Customizable (serpentine as standard option)
Sealing method: Multi-layer O-ring sealing
Fluid interfaces: Standard inlet/outlet fittings (custom options available)
Thermal ports:
φ4 mm heating rod port
φ4 mm thermocouple port
Typical Applications
•CO₂ electroreduction (MEA-based gas–liquid systems)
•Water electrolysis (HER / OER)
•Fuel cell performance and durability studies
•Synthetic electrochemistry
•Electrochemical wastewater treatment
Customization Options
•Reaction area and cell thickness
•Flow-field geometry and depth
•Bipolar plate material selection
•Membrane type and compatibility
•High-temperature / high-pressure reinforced versions
•Gas and liquid interface configurations

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