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Liquid Hydrogen Tank Container
Liquid Hydrogen Tank Container
Liquid Hydrogen Tank Container
Liquid Hydrogen Tank Container

Liquid Hydrogen Tank Container

High‑Vacuum Cryogenic Tank Container for Liquid Hydrogen Storage and Transport

The Liquid Hydrogen Tank Container is a specialized cryogenic vessel designed for the safe storage and transport of liquid hydrogen at ultra‑low temperatures. Constructed with double‑wall stainless steel, high‑vacuum insulation, and multilayer thermal shielding, it minimizes heat ingress and reduces hydrogen boil‑off during logistics and stationary use. The container integrates advanced safety systems, pressure regulation, and secure handling interfaces to ensure reliable performance in demanding environments. It is widely applied in hydrogen energy projects, aerospace systems, fuel cell applications, and industrial operations requiring efficient hydrogen distribution.

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Product Overview

The liquid hydrogen tank container is a cryogenic pressure transport system designed for large-scale, long-distance liquid hydrogen transportation. Compared to high-pressure gaseous hydrogen transport, liquid hydrogen offers higher energy density per unit volume, improved transport efficiency, and lower overall cost.

This container uses systematic cryogenic insulation and optimized structural design to ensure safe and efficient transport under road, rail, and multimodal conditions. It is suitable for the transport and turnover stages in the liquid hydrogen supply chain, meeting the requirements for long-distance hydrogen delivery.

Working Principle

The tank container integrates a cryogenic pressure vessel with the container structure. Materials and manufacturing processes are selected to withstand the extreme low-temperature environment of liquid hydrogen.

The vessel employs high-vacuum multilayer insulation to significantly reduce heat conduction, convection, and radiation, minimizing external heat ingress. Support structures are optimized to meet strength and transport load requirements while reducing solid heat transfer paths. This design lowers daily static boil-off and ensures efficient, stable transport of liquid hydrogen.

Key Features

  • High Transport Efficiency:Designed for large-scale, long-distance liquid hydrogen transport, offering higher overall efficiency than high-pressure gaseous hydrogen solutions.
  • Excellent Insulation:High-vacuum multilayer insulation effectively reduces liquid hydrogen evaporation.
  • Low Boil-Off Rate:Optimized support structures minimize thermal bridging and daily static evaporation.
  • Safe and Reliable Structure:Engineered to withstand cryogenic temperatures, internal pressure, and transport loads.
  • Versatile Transport Modes:Compatible with road, rail, and multimodal transport requirements.
  • Standards Compatibility:Designed to meet domestic and international technical and transport regulations.

Applications

  • Long-Distance Liquid Hydrogen Transport:Ensures stable delivery from production sites to downstream users.
  • Centralized Liquid Hydrogen Distribution & Turnover:Supports hydrogen supply chains in energy infrastructure.
  • Demonstration Projects & Research Platforms:Provides reliable transport solutions for hydrogen demonstration projects and laboratories.
  • Hydrogen Transportation & Energy Systems:Maintains continuity and reliability in liquid hydrogen supply.
  • Industrial Applications:Provides stable transport support for industrial production and low-temperature processes that require liquid hydrogen.

MediumLiquid Hydrogen
Maximum Allowable Working Pressure1.2MPa
Water Capacity40500Liters
Fill Rate90%(Optional:82%)
Tare Weight16,100 kg (maximum deviation of 3%)
Filling Mass2580kg
Gross Weight18680 kg
Design StandardsASMEⅧ.1、IMDG
Static Evaporation Rate≤0.73%/day (for LH2) (Ambient conditions: 100 kPa and 15℃)

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