

Add to Cart
PEM hydrogen production gas diffusion layer titanium powder felt
The core material for PEM hydrogen production with completely
independent intellectual property rights independently developed by
Borsemai.
The main process of its preparation is:
Specification parameter table
Parameter | Unit | Titanium powder felt(TPF) |
Material | / | Pure titanium |
Production process | / | High temperature sintering |
Thickness | mm | 0.15-2.0 |
Thickness | μm | ≤40 |
Surface density | g/cm³ | 0.6-2.0 |
Surface roughness | μm | ≤30 |
Minimum aperture | μm | 3-5 |
Average pore size | μm | 12-20 |
Porosity | % | 30-50 |
Compression | %2MPa | 3-8 |
Tensile strength | KN/50mm | 0.6-2.0 |
Width | mm | 500-1000 |
Processing method | / | Laser Cutting |
Application | / | AEM Hydrogen Production |
Characteristic:
1. Both pore size and porosity can be controlled;
2. Gradient pore structure
3. Large specific surface area;
4. Excellent water and gas transmission performance;
5. Excellent electrical and thermal conductivity;
6. High temperature resistance and thermal shock resistance;
7. Resistance to medium corrosion;
8. Weldable and machinable
1. Flexible and bendable
2. Large size and width
3. Extremely low surface roughness
Advantages:
1. Asymmetric gradient structure has excellent water vapor
transmission performance
2. Flexible structure, good adhesion, small compression
deformation, wide width, large length, random
Application:
PEM hydrogen production anode diffusion layer GDL
The anode diffusion layer is used for mass transfer of O2 and H2O
in environments with high potential and acidity, requiring coatings
with good corrosion resistance. The porous transport layer is
located between the catalytic layer and the bipolar plate, serving
as a pathway for water supply, gas emission, and electron
transport, directly affecting the concentration polarization and
Ohmic polarization of the water electrolysis reaction. The porous
transport layer should have a rich continuous pore structure that
is conducive to the diffusion and transfer of water and
precipitated gases, as well as good conductivity to reduce Ohmic
polarization. The anode side porous transport layer is generally
made of corrosion-resistant titanium porous material in high
potential acidic environments, and its surface can be treated with
precious metal coating to reduce contact resistance and service
life.