Using high-performance hydrogen storage alloy as hydrogen storage medium and adopting modular structure design, various hydrogen storage devices adopting metal hydride with a hydrogen storage capacity of 1~20 kg can be customized and developed, integrating 2~100 kg grade hydrogen storage system. It can be widely used in the application fields of high-purity hydrogen sources such as fuel cell electric vehicles, hydrogen energy storage systems and hydrogen storage systems of fuel cell standby power supplies.
Description | Parameters | Remarks |
Rated hydrogen storage capacity (kg) | Design as required |
|
Overall dimension (mm) | Design as required |
|
Hydrogen filling pressure (MPa) | ≤5 | Design as required |
Hydrogen releasing pressure (MPa) | 0.1~5 | Design as required |
Maximum gas supply flow (g/s) | Design as required |
|
Temperature range of circulating water for hydrogen release (°C) | 50-75 |
|
Circulated hydrogen filling and releasing life (times) | ≥3000 | The hydrogen storage capacity is not less than 80%, and the hydrogen filling/releasing efficiency is not less than 90%. |
Hydrogen filling time (min) | 60 | Design as required |
Temperature range of circulating water for hydrogen fill (°C) | -10-30 |
|
1. High volumetric hydrogen storage density, could reach liquid hydrogen density;
2. High hydrogen storage quality and high hydrogen releasing rate, ensuring the long-term full-load operation of high-power fuel cells;
3. High purity of hydrogen release, effectively ensuring the service life of hydrogen fuel cells;
4. Low storage pressure, solid-state storage, and good safety;
5. The filling pressure is low, and the hydrogen production system can be directly used to fill the solid hydrogen storage device without pressurization;
6. The energy consumption is low, and the waste heat generated during fuel cell power generation can be used to supply hydrogen to the solid hydrogen storage system;
7. Low hydrogen storage unit cost, long cycle life of solid hydrogen storage system and high residual value;
8. Less investment, less equipment for hydrogen storage and supply system, and small footprint.
Efficient use of energy to improve the human environment
Using high-performance hydrogen storage alloy as hydrogen storage medium and adopting modular structure design, various hydrogen storage devices adopting metal hydride with a hydrogen storage capacity of 1~20 kg can be customized and developed, integrating 2~100 kg grade hydrogen storage system. It can be widely used in the application fields of high-purity hydrogen sources such as fuel cell electric vehicles, hydrogen energy storage systems and hydrogen storage systems of fuel cell standby power supplies.
Description | Parameters | Remarks |
Rated hydrogen storage capacity (kg) | Design as required |
|
Overall dimension (mm) | Design as required |
|
Hydrogen filling pressure (MPa) | ≤5 | Design as required |
Hydrogen releasing pressure (MPa) | 0.1~5 | Design as required |
Maximum gas supply flow (g/s) | Design as required |
|
Temperature range of circulating water for hydrogen release (°C) | 50-75 |
|
Circulated hydrogen filling and releasing life (times) | ≥3000 | The hydrogen storage capacity is not less than 80%, and the hydrogen filling/releasing efficiency is not less than 90%. |
Hydrogen filling time (min) | 60 | Design as required |
Temperature range of circulating water for hydrogen fill (°C) | -10-30 |
|
1. High volumetric hydrogen storage density, could reach liquid hydrogen density;
2. High hydrogen storage quality and high hydrogen releasing rate, ensuring the long-term full-load operation of high-power fuel cells;
3. High purity of hydrogen release, effectively ensuring the service life of hydrogen fuel cells;
4. Low storage pressure, solid-state storage, and good safety;
5. The filling pressure is low, and the hydrogen production system can be directly used to fill the solid hydrogen storage device without pressurization;
6. The energy consumption is low, and the waste heat generated during fuel cell power generation can be used to supply hydrogen to the solid hydrogen storage system;
7. Low hydrogen storage unit cost, long cycle life of solid hydrogen storage system and high residual value;
8. Less investment, less equipment for hydrogen storage and supply system, and small footprint.
Efficient use of energy to improve the human environment