Event
- Event ID
- 944
- Quality
- Description
A 50-litre standard hydrogen gas cylinder was temporarily placed and used in a laboratory. The hydrogen gas was used for a flame ionization detector (FID) in gas chromatography (GC) instrument.
The safety relief valve on the pressure regulator blew open and released of about 340 g of hydrogen into a laboratory. The gas cloud did not ignite so there was no injury or damage.In Henriksen et al (see references) a full investigation is presented to verify the cause of leakage and estimate the gas concentration of the dispersion and gas cloud, including the modelling of a likely explosion. If the gas cloud had ignited, the explosion pressure would most likely cause significant structural damage.
- Event Initiating system
- Classification of the physical effects
- Unignited Hydrogen Release
- Nature of the consequences
- leak no ignition
- Macro-region
- Europe
- Country
- Norway
- Date
- Component involved
- pressure regulator
- Failure mode
- rupture, no ignition
- Initiating cause
- material degradation (ageing)
- Root CAUSE analysis
The INITIATING CAUSE was the degradation and leaking of a pressure regulator.
The temporary safety setting of the lab functioned as designed, and the detector activated on hydrogen presence before further escalation.
However, due a misunderstanding within the organisation, a bigger hydrogen cylinder was installed than the one agreed during risk assessment. Moreover, the regulator had never been the object of an inspection and maintenance plan. All this suggests a ROOT CAUSE in shortcoming of operative and safety procedures.- Root causes
- Date entry in HIAD
- 01/01/2018
Facility
- Application
- Laboratory / R&D
- Sub-application
- hydrogen laboratory
- Hydrogen supply chain stage
- All components affected
hydrogen pressure regulator, 200 bar compressed hydrogen bottle,
- Process temperature range [C]
- ambient temperature (-50°C to +50°C)
- Process pressure range [MPa]
- medium to high pressure (10 to 50 MPa)
- Location type
- Confined
- Location
- populated area
- Operational condition
- Pre-event occurrences
The condition were abnormal because of the temporary decision to isntal compressed gas in a lab.
Emergency & Consequences
- Number of fatalities
- 0
- Number of injured persons
- 0
Lesson Learnt
- Lesson Learnt
According to Henriksen et al. (see references), the were:
1. Under the abnormal condition of operation of the lab, the planned reduction of the total hydrogen quantity to a small 10 l bottle would have reduced the released hydrogen by 55% even in the case of complete depleted.2. The presence of a hydrogen detector and alarm may have saved the laboratory from a severe accidental explosion. Without it, the whole hydrogen gas cylinder would probably have been released into the room, creating a 1.2 meters high gas cloud with 15 % stoichiometric hydrogen.
3. The age of the hydrogen gas regulator used was difficult to determine by reading the numbers printing on the back. The age was first established after contacting a supplier. This is an important information to determine the end of life of lab instrumentation.
4. Related to point 3., there is a need for regular maintenance/check of the gas regulators . Following the incident, a service has been established.
5. A pressure safety valve on the gas regulator is not a safety feature when the safety valve releases the gas into an environment that contains several ignition sources. To work as a safety feature the gas needs to be routed to a safe ventilation point. A similar event happened at a commercial facility in 05/03/2013, where a failure of the pressure safety valve occurred. One of the conclusions from the investigation was that if the safety valve shall function as a safety feature the gas needs to be released in a safe location.
In-depth data
- Release type
- gas
- Involved substances (% vol)
- H2 100%
- Release temperature [°C]
- 25
- Release pressure [MPa]
- 20
- Probable IGNITION SOURCE
References
- Sources categories
- Scientific article
- Reference & weblink
M. Henriksen et al,
"Accidental hydrogen release in GC-laboratory; a case study",
Int. Conference on Hydrogen safety, 2015 October 21-25, Yokohama, Japan