“Salt cavern storage is the only proven, cost-effective solution available at the scale required to facilitate Hydrogen to Power.”

DESNZ-commissioned report from international energy consultants Baringa LLP

The Salt Cavern Process

What is a Salt Cavern?

Salt caverns are not natural caves but man-made chambers created deep underground within thick naturally occurring salt (halite) deposits.

Such caverns have been used to store natural gas and hydrogen in the UK since the 1970s.

Only three areas in Great Britain have suitably thick and extensive salt deposits suitable for such caverns: Dorset, Yorkshire and Cheshire.

How are salt caverns created?

The caverns are created through a process called solution mining.

Wells are drilled deep into thick, underground salt layers (like the Permian Zechstein salt found beneath the UK’s East and South Coasts, or the Triassic salt underlying Dorset and Cheshire).

Fresh or sea water is pumped down through the well to dissolve the salt. The resulting saltwater (brine) containing the dissolved salt is pumped back up to surface enabling the cavern to grow until it reaches the required size.

A single large cavern is around one hundred metres high and wide, providing an immense storage volume (332,000 m3 useable cavern volume per cavern).

Where are the salt fields located in the UK?

The UK mainland is blessed with thick rock salt (halite) deposits suitable for large-scale cavern construction in three primary geological regions.

These areas are strategically important because they coincide with major industrial decarbonisation and hydrogen demand clusters, namely:

  • The South & South West
    Dorset contains the South’s only regionally extensive and thick Triassic salt deposit capable of providing  the necessary energy storage to facilitate decarbonisation, H2P and pipeline support in  the South of England.
  • The North West (Cheshire & West Lancashire)
    Contains an age equivalent  Triassic salt deposit within the Cheshire Basin which is already being utilised to store natural gas and can support the storage needs of the Hynet cluster.
  • The North East (East Yorkshire & Teeside)
    Contains the eastern most extension of the Permian Zechstein salt deposit which extends eastwards across the North Sea and further into Northern Europe. It is ideally situated to support the East Coast Cluster.

By harnessing the stability of salt geology, the UK can confidently build the backbone of a resilient, Net Zero energy system.

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