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Hydrogen Storage and Supply Device Using Storage-Grade Metal Hydride(Solid State Hydrogen Storag...

Información detallada
Nombre del producto:
Dispositivo de almacenamiento y suministro de hidrógeno que utiliza hidruro metálico de grado de alm
Producción de equipos:
- ¿ Qué?
Escenario de aplicación:
horas
Personalizable:
- ¿ Qué?
Calidad:
En alto.
Ciclo de vida:
Es muy larga.
Descripción de producto

    Product introduction

    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

     

    Features

    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.

    Hydrogen Storage and Supply Device Using Storage-Grade Metal Hydride(Solid State Hydrogen Storag... 0

    mission

    Efficient use of energy to improve the human environment

    Buen precio  en línea

    Detalles De Los Productos

    Hogar > Productos >
    Estación de hidrógeno
    >
    Hydrogen Storage and Supply Device Using Storage-Grade Metal Hydride(Solid State Hydrogen Storag...

    Hydrogen Storage and Supply Device Using Storage-Grade Metal Hydride(Solid State Hydrogen Storag...

    Información detallada
    Nombre del producto:
    Dispositivo de almacenamiento y suministro de hidrógeno que utiliza hidruro metálico de grado de alm
    Producción de equipos:
    - ¿ Qué?
    Escenario de aplicación:
    horas
    Personalizable:
    - ¿ Qué?
    Calidad:
    En alto.
    Ciclo de vida:
    Es muy larga.
    Descripción de producto

      Product introduction

      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

       

      Features

      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.

      Hydrogen Storage and Supply Device Using Storage-Grade Metal Hydride(Solid State Hydrogen Storag... 0

      mission

      Efficient use of energy to improve the human environment