Award

Sustainable Aviation Fuel Plant (Fischer-Tropsch)

UNIVERSITY OF SHEFFIELD

This public procurement record has 3 releases in its history.

Award

20 Dec 2022 at 12:43

TenderUpdate

27 May 2022 at 08:28

Tender

19 Apr 2022 at 17:20

Summary of the contracting process

The University of Sheffield is seeking to procure a Sustainable Aviation Fuel Plant (Fischer-Tropsch) based on CO2 extracted from bioenergy exhaust gases and green H2 feedstocks. The plant aims to produce 1.5 litres/h of sustainable aviation fuel to Jet A-1 ASTM spec. The procurement includes modules for feed gas clean up, syngas conversion, and product upgrading. The tender process has been completed, and the award status is cancelled.

This tender offers opportunities for businesses in the petroleum, energy, and research sectors to participate in the design, build, and installation of plant modules. Companies with expertise in zero-carbon energy, bioenergy, and carbon capture technologies are well-suited to compete. The University of Sheffield, as the buying organisation, is a significant player in R&D for sustainable energy solutions, providing a prestigious opportunity for successful collaborators to showcase their capabilities.

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Notice Title

Sustainable Aviation Fuel Plant (Fischer-Tropsch)

Notice Description

The University of Sheffield's Translational Energy Research Centre (TERC) is one of the largest and best-equipped national R&D centres in Europe for zero-carbon energy, hydrogen, bioenergy, and Carbon Capture, Utilisation and Storage (CCUS). We are looking to procure a sustainable aviation fuel (SAF) pilot plant based on Fischer-Tropsch technology. The plant will be required to produce at least 1.5 litres/h of sustainable aviation fuel to Jet A-1 ASTM specification D1655 (with flash point minimum of 38degC and a freeze point maximum of -47degC). The SAF plant will utilise CO2 extracted from bioenergy exhaust gases and on-site generated green H2 as feedstocks. It will also have the option to use biomass syngas from an onsite gasifier

Lot Information

Feed gas clean up and conditioning module

The University of Sheffield's Translational Energy Research Centre (TERC) is one of the largest and best-equipped national R&D centres in Europe for zero-carbon energy, hydrogen, bioenergy, and Carbon Capture, Utilisation and Storage (CCUS). We are looking to procure a sustainable aviation fuel (SAF) pilot plant based on Fischer-Tropsch technology. The plant will be required to produce at least 1.5 litres/h of sustainable aviation fuel to Jet A-1 ASTM specification D1655 (with flash point minimum of 38degC and a freeze point maximum of -47degC). The SAF plant will utilise CO2 extracted from bioenergy exhaust gases and on-site generated green H2 as feedstocks. It will also have the option to use biomass syngas from an onsite gasifier. The tender is for a full turn-key solution including: design, build, installation and commissioning of all elements of the plant from cleaning and preparation of the feed gases, through to conversion of CO2 and H2 to syngas; reaction of the syngas in an FT reactor; and product upgrading steps to achieve the desired product. The selected tenderer will be the Principal Designer and the Principal Contractor for the project with respect to CDM regulations.

Options: As described within the tender documents

Biomass syngas clean up and conditioning module (as add-on to Lot 1A)

The University of Sheffield's Translational Energy Research Centre (TERC) is one of the largest and best-equipped national R&D centres in Europe for zero-carbon energy, hydrogen, bioenergy, and Carbon Capture, Utilisation and Storage (CCUS). We are looking to procure a sustainable aviation fuel (SAF) pilot plant based on Fischer-Tropsch technology. The plant will be required to produce at least 1.5 litres/h of sustainable aviation fuel to Jet A-1 ASTM specification D1655 (with flash point minimum of 38degC and a freeze point maximum of -47degC). The SAF plant will utilise CO2 extracted from bioenergy exhaust gases and on-site generated green H2 as feedstocks. It will also have the option to use biomass syngas from an onsite gasifier. The tender is for a full turn-key solution including: design, build, installation and commissioning of all elements of the plant from cleaning and preparation of the feed gases, through to conversion of CO2 and H2 to syngas; reaction of the syngas in an FT reactor; and product upgrading steps to achieve the desired product. The selected tenderer will be the Principal Designer and the Principal Contractor for the project with respect to CDM regulations.

Options: As described within the tender documents

Reverse Water Gas Shift (RWGS) module

The University of Sheffield's Translational Energy Research Centre (TERC) is one of the largest and best-equipped national R&D centres in Europe for zero-carbon energy, hydrogen, bioenergy, and Carbon Capture, Utilisation and Storage (CCUS). We are looking to procure a sustainable aviation fuel (SAF) pilot plant based on Fischer-Tropsch technology. The plant will be required to produce at least 1.5 litres/h of sustainable aviation fuel to Jet A-1 ASTM specification D1655 (with flash point minimum of 38degC and a freeze point maximum of -47degC). The SAF plant will utilise CO2 extracted from bioenergy exhaust gases and on-site generated green H2 as feedstocks. It will also have the option to use biomass syngas from an onsite gasifier. The tender is for a full turn-key solution including: design, build, installation and commissioning of all elements of the plant from cleaning and preparation of the feed gases, through to conversion of CO2 and H2 to syngas; reaction of the syngas in an FT reactor; and product upgrading steps to achieve the desired product. The selected tenderer will be the Principal Designer and the Principal Contractor for the project with respect to CDM regulations

Options: As per the tender documents

Blending Skid

The University of Sheffield's Translational Energy Research Centre (TERC) is one of the largest and best-equipped national R&D centres in Europe for zero-carbon energy, hydrogen, bioenergy, and Carbon Capture, Utilisation and Storage (CCUS). We are looking to procure a sustainable aviation fuel (SAF) pilot plant based on Fischer-Tropsch technology. The plant will be required to produce at least 1.5 litres/h of sustainable aviation fuel to Jet A-1 ASTM specification D1655 (with flash point minimum of 38degC and a freeze point maximum of -47degC). The SAF plant will utilise CO2 extracted from bioenergy exhaust gases and on-site generated green H2 as feedstocks. It will also have the option to use biomass syngas from an onsite gasifier. The tender is for a full turn-key solution including: design, build, installation and commissioning of all elements of the plant from cleaning and preparation of the feed gases, through to conversion of CO2 and H2 to syngas; reaction of the syngas in an FT reactor; and product upgrading steps to achieve the desired product. The selected tenderer will be the Principal Designer and the Principal Contractor for the project with respect to CDM regulations.

Options: As described within the tender documents

Fischer-Tropsch reactor

The University of Sheffield's Translational Energy Research Centre (TERC) is one of the largest and best-equipped national R&D centres in Europe for zero-carbon energy, hydrogen, bioenergy, and Carbon Capture, Utilisation and Storage (CCUS). We are looking to procure a sustainable aviation fuel (SAF) pilot plant based on Fischer-Tropsch technology. The plant will be required to produce at least 1.5 litres/h of sustainable aviation fuel to Jet A-1 ASTM specification D1655 (with flash point minimum of 38degC and a freeze point maximum of -47degC). The SAF plant will utilise CO2 extracted from bioenergy exhaust gases and on-site generated green H2 as feedstocks. It will also have the option to use biomass syngas from an onsite gasifier. The tender is for a full turn-key solution including: design, build, installation and commissioning of all elements of the plant from cleaning and preparation of the feed gases, through to conversion of CO2 and H2 to syngas; reaction of the syngas in an FT reactor; and product upgrading steps to achieve the desired product. The selected tenderer will be the Principal Designer and the Principal Contractor for the project with respect to CDM regulations.

Options: As described within the tender documents

Hydrocracking and hydrogeneration reactor

The University of Sheffield's Translational Energy Research Centre (TERC) is one of the largest and best-equipped national R&D centres in Europe for zero-carbon energy, hydrogen, bioenergy, and Carbon Capture, Utilisation and Storage (CCUS). We are looking to procure a sustainable aviation fuel (SAF) pilot plant based on Fischer-Tropsch technology. The plant will be required to produce at least 1.5 litres/h of sustainable aviation fuel to Jet A-1 ASTM specification D1655 (with flash point minimum of 38degC and a freeze point maximum of -47degC). The SAF plant will utilise CO2 extracted from bioenergy exhaust gases and on-site generated green H2 as feedstocks. It will also have the option to use biomass syngas from an onsite gasifier. The tender is for a full turn-key solution including: design, build, installation and commissioning of all elements of the plant from cleaning and preparation of the feed gases, through to conversion of CO2 and H2 to syngas; reaction of the syngas in an FT reactor; and product upgrading steps to achieve the desired product. The selected tenderer will be the Principal Designer and the Principal Contractor for the project with respect to CDM regulations.

Options: As described within the tender documents

Distillation module

As described within the tender documents

Options: As described within the tender documents

Online process analyser

As described within the tender documents

Options: As described within the tender documents

Publication & Lifecycle

Open Contracting ID
ocds-h6vhtk-032e9f
Publication Source
Find A Tender Service
Latest Notice
https://www.find-tender.service.gov.uk/Notice/036026-2022
Current Stage
Award
All Stages
Tender, Award

Procurement Classification

Notice Type
Tender Notice
Procurement Type
Standard
Procurement Category
Goods
Procurement Method
Open
Procurement Method Details
Open procedure
Tender Suitability
Not specified
Awardee Scale
SME

Common Procurement Vocabulary (CPV)

CPV Divisions

09 - Petroleum products, fuel, electricity and other sources of energy

38 - Laboratory, optical and precision equipments (excl. glasses)

73 - Research and development services and related consultancy services


CPV Codes

09000000 - Petroleum products, fuel, electricity and other sources of energy

38970000 - Research, testing and scientific technical simulator

73000000 - Research and development services and related consultancy services

Notice Value(s)

Tender Value
£3,455,000 £1M-£10M
Lots Value
£3,455,000 £1M-£10M
Awards Value
Not specified
Contracts Value
£1,530,000 £1M-£10M

Notice Dates

Publication Date
20 Dec 20223 years ago
Submission Deadline
3 Jun 2022Expired
Future Notice Date
Not specified
Award Date
7 Nov 20223 years ago
Contract Period
30 Jun 2022 - 28 Feb 2023 6-12 months
Recurrence
Not specified

Notice Status

Tender Status
Complete
Lots Status
Cancelled
Awards Status
Active, Unsuccessful
Contracts Status
Active

Contracting Authority (Buyer)

Main Buyer
UNIVERSITY OF SHEFFIELD
Contact Name
David Middle
Contact Email
dave.middle@sheffield.ac.uk
Contact Phone
+44 1142221560

Buyer Location

Locality
SHEFFIELD
Postcode
S10 2TN
Post Town
Sheffield
Country
England

Major Region (ITL 1)
TLE Yorkshire and The Humber
Basic Region (ITL 2)
TLE3 South Yorkshire
Small Region (ITL 3)
TLE32 Sheffield
Delivery Location
TLE3 South Yorkshire, TLE32 Sheffield

Local Authority
Sheffield
Electoral Ward
Broomhill and Sharrow Vale
Westminster Constituency
Sheffield Central

Supplier Information

Number of Suppliers
1
Supplier Name

STAR HYDROGEN

Open Contracting Data Standard (OCDS)

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The Open Contracting Data Standard (OCDS) is a framework designed to increase transparency and access to public procurement data in the public sector. It is widely used by governments and organisations worldwide to report on procurement processes and contracts.

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