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Clean Hydrogen Partnership

Fuels fire in a refinery

Event

Event ID
248
Quality
Description

A fire broke out affecting the heavy fuel purification plant of the refinery. The incident could have originated by the failure of one of the following plant components: - pipes leading to the pressure gauges of the reactor - recycled gas pipe at the bottom of the reactor having a quench function, - diatermic oil pipe (hot oil) entering or exiting the exchanger - flanged joints exchanger and connection lines. On the base of and data logging and video evidences, the company excludes a release from the hot oil circuit as the triggering factor of the fire. The release started 30 minutes before the fire. Also a release from the hydrogen pipes is not considered likely, as the records demonstrate that the hydrogen pipe failed 7 min after fire began. Concerning the flange joints of exchangers, after dismounting the exchanger flanged joints, the gaskets resulted not to be damaged. The company concluded that the failure of a pipe from the pressure measurement gauges of reactor is the most likely accident triggering factor. This assumption is supported by the following facts: 1) this part is located in the area corresponding to the epicentre of the fire, 2) the area corresponds to the area visually identified by the witnesses, 3) the product release (hydrogen and fuel oil) from one of these pipes can cause a 6 m long jet flame as occurred. 4) the product supposedly released would have had a high enough temperature and pressure to self-ignite or ignite against a hot spot of the plant, like the hot oil circuit. 5) the damages recorded were caused by overheating (flame exposition) and were not caused by overpressure or explosion - the pressure measurement records confirm significant pressure changes at the beginning of the event. The company does not have any element allowing to identify the failure that caused the pipe to rupture.

Event Initiating system
Classification of the physical effects
Hydrogen Release and Ignition
Nature of the consequences
fire
Macro-region
Europe
Country
European Union
Date
Component involved
pipe (generic)
Failure mode
rupture & ignition
Initiating cause
conventional component failure (fire)
Root CAUSE analysis

The INITIATING CAUSE of the accident is the release and ignition of fuels from a pipe. The incident then escalated to other systems, among which a hydrogen pipe. The root cause is unknown.

Root causes
Date entry in HIAD
01/01/2022

Facility

Application
Petrochemical industry
Sub-application
Hydrodesulphurisation process
Hydrogen supply chain stage
All components affected

catalytic hydro-treatment plant, pipes, heat exchanger

Process temperature range [C]
High temperature (100°C to 500°C)
Location type
Open
Location
industrial area
Operational condition
Description of the facility/unit/process/substances

DESCRIPTION OF THE FACILITY Capacity of 1650 t/d (light fuel treatment section) and 1450 t/d (heavy fuel treatment section) The goal of the unit is to improve the characteristics of light and heavy fuel oil produced in the refinery by treating them with high pressure hydrogen on a specific catalyst, to eliminate the sulphur in the fuel oil, produce hydrogen sulphide, hydrogenate the hydrocarbons and improve other characteristics. The plant was designed with two heating - reaction - fractionating sections, one for light fuel oil mixtures (the unit affected) and one for the heavy fuel oil mixtures, while foreseeing one single gas purification and compression section for the recycled gas to be reintegrated in the circuit.

Emergency & Consequences

Number of fatalities
0
Number of injured persons
0
Currency
Euro
Property loss (onsite)
13.600.000
Post-event summary

The fire caused damage to the structures of the unit and has not affected other units of the refinery. There have not been any damages to persons or the environment reported. Material damage has been estimated in 5 million Euro for the structures and 7,6 million Euro for the reconstruction, the remediation measures, materials and other related costs.

Emergency action

21:40 The fire starts and the emergency plan is activated. 21:40 the fire brigade is alerted. The fire is kept under control and evolves without noticeable changes until consumption of the fuel, once the pipes were shut off according to the emergency response. 1:20 of the day after the fire is extinguished (3 hours and 40 minutes after the fire initiated) and 1: 45 The state of emergency is called off by the fire brigade

Lesson Learnt

Corrective Measures

The operator decided to rebuild the plant with a new executive project, in consideration of the damage caused to the plant. The new executive project foresees essentially: - the complete separation of the light fuel oil section and the heavy fuel section such to avoid for example the possibility of domino effects, - lowering the maximum height for the installation to facilitate fire extinguishing operations- reconstruction of the plant in compliance with the PED directive, - rationalising the piping system to minimise adjacencies, relocate valves on the hydrogen quench line to maintain the line depressurised, reduce the number of measurement gauges and insertion of valves in a safe area for depressurising the hot oil circuit.

In-depth data

Release type
gas mixture
Involved substances (% vol)
H2,light hydrocarbons
Probable IGNITION SOURCE
Flame type

References

Sources categories
eMARS
Reference & weblink

European eMARS database: https://emars.jrc.ec.europa.eu/en/emars/accident/view/19158d8a-2bb2-4ea5-dd8a-b0e5a9b7cb0a (accessed June 2025)

Events in database H2TOOLS https://h2tools.org/lessons/pipe-rupture-and-hydrogen-fire-catalytic-hydrotreatment-plant(accessed December 2025)