Laser Induced Desorption System for Measuring First Wall Retention in STEP
ExpiredHighlights
- Deadline
- 7 Sept 2026
- Estimated value
- £75,000
- Location
- UK
Details
- Published
- 20 Aug 2026
- Deadline
- 7 Sept 2026
- Value
- £75,000
- Location
- UK
- Source
- Find a Tender
- Source notice ID
- 079466-2026
- OCID
- ocds-h6vhtk-06d4a1
- CPV codes
- 71300000, 71320000, 71600000, 73100000, 73111000, 73120000
Description
UK Fusion Energy Ltd (UKFE) is seeking to appoint a supplier to undertake the concept design of a system capable of in-situ quantification of tritium retention within plasma-facing (first wall) materials for the Spherical Tokamak for Energy Production (STEP) programme.
STEP is the UK's flagship fusion energy programme, sponsored by the Department for Energy Security and Net Zero (DESNZ), and aims to design and construct the UK's first prototype fusion power plant capable of demonstrating net energy production, fuel self-sufficiency and a viable route to plant maintenance. UKFE, a wholly owned subsidiary of the United Kingdom Atomic Energy Authority (UKAEA), is responsible for delivering the programme.
A key challenge for future fusion power plants is the management of tritium, which serves as a fuel for the deuterium-tritium fusion reaction. Tritium is both radioactive and scarce, making accurate measurement of its retention within plasma-facing components essential to demonstrating fuel self-sufficiency, supporting tritium accountancy, and monitoring the condition of first wall materials throughout plant operation.
The successful supplier will develop a concept design for a measurement system capable of operating within the demanding environment of a fusion power plant, taking into account constraints such as neutron radiation, strong magnetic fields, thermal loading, limited installation space, and exposure to radioactive materials.
This procurement represents the initial concept design phase of a wider programme of work. Subject to future funding and programme approvals, the outputs of this contract are expected to inform subsequent detailed design activities, technology maturation, de-risking and testing, and ultimately the development of an integrated tritium measurement system for deployment within the STEP tokamak.
Similar opportunities
- Specialist Consultancy Advice and Investigation ServicesTenderCENTRE FOR PROCESS INNOVATION LIMITEDCloses 30 Sept 2026
- GB-Cromer: PROC158 Strategic Environmental Assessment (SEA) Services to support preparation of Local PlanTenderNorth Norfolk District CouncilCloses 12 Oct 2026
- Design and Build of Shaft & Silo Waste Transfer CorridorTenderNuclear Restoration Services Ltd£10,400,000
- 1067273293 T1419 Creating neuroinclusive principles to maximise train driver performanceTenderRSSBCloses 12 Oct 2026
- UK_1569 Complement or competition - UK TNE versus student mobilityTenderBritish CouncilCloses 2 Oct 2026
More from UK Industrial Fusion Solutions Ltd
View all- Materials Testing Framework for STEPContractUK Industrial Fusion Solutions LtdAwarded
- Corrosion Testing Framework for STEPExpiredUK Industrial Fusion Solutions LtdClosed 8 Sept 2026
- Laser Induced Desorption System for Measuring First Wall Retention in STEPExpiredUK Industrial Fusion Solutions LtdClosed 24 Aug 2026
- Corrosion Testing Framework for STEPExpiredUK Industrial Fusion Solutions LtdClosed 24 Aug 2026
- STEP Vapour Shielding Scenario SimulationPlanningUK Industrial Fusion Solutions Ltd£200,000
Lots (1)
| Lot | Title | Value |
|---|---|---|
| 1 | Lot 1 | £75,000 |