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Clean Hydrogen Partnership

Explosion in a LH2 container

Event

Event ID
325
Quality
Description

An explosion occurred in a Dewar used for metals tensile testing at liquefied hydrogen temperatures. The container consisted of vacuum insulated bottom and of cylindrical shaped polyurethane foam top. The venting of hydrogen was through a 2 inch diameter hole in the side of the foam insulation. The boil-off of liquid hydrogen was being accelerated by the use of two electric heaters on the bottom of the Dewar. Explosion was evaluated equivalent to about 0.25 lb TNT. This was followed by the dispersion of hydrogen which resulted in further hydrogen-air explosions.

Event Initiating system
Classification of the physical effects
Hydrogen Release and Ignition
Nature of the consequences
Macro-region
North America
Country
United States
Date
-
Component involved
cryogenic vessel
Failure mode
internal explosion
Initiating cause
inadequate or no purge
Root CAUSE analysis

The INITIATING CAUSE was the formation of a air-hydrogen mixture inside the Dewar.
Air is believed to have backed into it through the vent hole in the polyurethane top. It was possible that air could have been cryo-pumped into it due to the high porosity of the foam.
Ignition is believed to be caused by high surface temperature of heaters.

The ROOT CAUSE was inadequate design of the system.

Root causes
Date entry in HIAD
30/10/2025

Facility

Application
Laboratory / R&D
Sub-application
Aerospace
Hydrogen supply chain stage
All components affected

dewar

Process temperature range [C]
cryogenic temperature (below -50°C)
Location type
Unknown
Location
unknown
Operational condition

Emergency & Consequences

Number of fatalities
0
Number of injured persons
0

In-depth data

Release type
liquid
Involved substances (% vol)
H2 100%
Probable IGNITION SOURCE
Explosion type

References

Sources categories
ORDIN
Reference & weblink

Mishap no 35 in
P. L. Ordin, Review of hydrogen accidents and incidents in NASA operations, 1974, NASA TM X-71565
https://ntrs.nasa.gov/citations/19740020344

Hankinson and Lowesmith, Qualitative Risk Assessment of Hydrogen Liquefaction, Storage and Transportation, FCH JU project IDEALHY, Deliverable 3.10 (2013)
confidential
(accessed October 2025)

Lowesmith et al., Safety issues of the liquefaction, storage and transportation of liquid hydrogen: An analysis of incidents and HAZIDS, Int. J. Hydrogen energy (2014) https://doi.org/10.1016/j.ijhydene.2014.08.002