Event
- Event ID
- 694
- Quality
- Description
A fire developed on a mathanation reactor. The methanation reactor vessel was found to be deformed and had a 3-4 inch rupture at a position corresponding to the top of the catalyst bed.
It is thougth that the incident was caused by ethylene entering the reactor. The ethylene reacted with hydrogen on the nickel catalyst, resulting in a very rapid release of energy. The corresponding temperature rise was sufficient to cause a ductile failure of the vessel.- Event Initiating system
- Classification of the physical effects
- Hydrogen Release and Ignition
- Nature of the consequences
- fire
- Macro-region
- Europe
- Country
- United Kingdom
- Date
- Component involved
- reactor / oven / furnace / test chamber
- Failure mode
- rupture & ignition
- Initiating cause
- run-away reaction
- Root CAUSE analysis
According to the ICHEME report (See References), the assumed INITIATING cause was a runaway reaction caused by the accidental injection of ethylene into the methanation reactor.
The proposed mechanism for the accident is that ethylene vapour entered the methanation reactor via the cold box where there was a low pressure/high temperature following a trip. When re-pressuring, the ethylene was carried forward through the 90% hydrogen line to the methanation reactor. This suggests a mistake in the design of the plant.- Root causes
- Date entry in HIAD
- 01/01/2021
Facility
- Application
- Chemical industry
- Sub-application
- Methanation process
- Hydrogen supply chain stage
- All components affected
methanator
- Location type
- Confined
- Location
- industrial area
- Operational condition
Emergency & Consequences
- Number of fatalities
- 0
- Number of injured persons
- 0
- Post-event summary
The methanation reactor was damaged.
In-depth data
- Release type
- gas mixture
- Involved substances (% vol)
- H2, ethylene
- Probable IGNITION SOURCE
- Explosion type
- Deflagration
References
- Sources categories
- ICHEME
- Reference & weblink
Event no. 12656 of the UK ICHEME database in PDF format:
https://www.icheme.org/knowledge/safety-centre/resources/accident-data/
(accessed July 2020)