HyEkoTank | Hydrogen PEM fuel cell system to retrofit ships in the marine transport industry

Summary
The HyEkoTank project will develop cost-effective technology for retrofitting seagoing and inland waterway vessels with hydrogen PEM fuel cell systems for emission-free operations. Retrofit solutions are urgently needed to transform the waterborne transport and reach the reduction of green house gas emissions established by EU and IMO by 2050. HyEkoTank project proposes the design, development, approval and demonstration of a 2.4 MW hydrogen fuel cell system. The technology will be developed by a consortium of 10 partners who are experts in the field and demonstrated by retrofitting a 18600 DWT tanker, EK Stream, under operation at 3 different journeys from Porvoo in the Baltic Sea. The main challenges that need to be resolved concern the development of a cost-efficient fuel cell system specifically designed for maritime applications and suitable to retrofit existing vessels, as well as the assessment and creation of hydrogen infrastructure and logistics for vessel refueling in ports, as well as safe hydrogen storage and handling. We aim at approving the HyEkoTank technology to deploy it for any type of vessel and operation, while demonstrating the expected environmental impacts: 55% GHG reduction during voyage, 100% reduction in port, and 62% total reduction yearly. The project will take the technology from TRL 4/5 to TRL 8.

The HyEkoTank consortium is mostly composed by companies with industrial/commercial interest in the project results: TECO 2030 AS (NO), Shell International Exploration & Production B.V. (NL), Shell International Trading & Shipping Company Limited (UK), Ektank AB (SE), Neste Oyj (FI), Fartygskonstruktioner AB (SE), Blom Maritime AS (NO), Teco Solutions AS (NO), Umoe Advanced Composites AS (NO). They are all experienced in providing services and commercializing products in the hydrogen and/or maritime fields. The consortium also counts with the participation of an academic partner, Universitetet i Tromsø - Norges Arktiske Universitet (NO).
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More information & hyperlinks
Web resources: https://cordis.europa.eu/project/id/101096981
Start date: 01-02-2023
End date: 31-01-2026
Total budget - Public funding: 8 342 499,75 Euro - 5 092 999,00 Euro
Cordis data

Original description

The HyEkoTank project will develop cost-effective technology for retrofitting seagoing and inland waterway vessels with hydrogen PEM fuel cell systems for emission-free operations. Retrofit solutions are urgently needed to transform the waterborne transport and reach the reduction of green house gas emissions established by EU and IMO by 2050. HyEkoTank project proposes the design, development, approval and demonstration of a 2.4 MW hydrogen fuel cell system. The technology will be developed by a consortium of 10 partners who are experts in the field and demonstrated by retrofitting a 18600 DWT tanker, EK Stream, under operation at 3 different journeys from Porvoo in the Baltic Sea. The main challenges that need to be resolved concern the development of a cost-efficient fuel cell system specifically designed for maritime applications and suitable to retrofit existing vessels, as well as the assessment and creation of hydrogen infrastructure and logistics for vessel refueling in ports, as well as safe hydrogen storage and handling. We aim at approving the HyEkoTank technology to deploy it for any type of vessel and operation, while demonstrating the expected environmental impacts: 55% GHG reduction during voyage, 100% reduction in port, and 62% total reduction yearly. The project will take the technology from TRL 4/5 to TRL 8.

The HyEkoTank consortium is mostly composed by companies with industrial/commercial interest in the project results: TECO 2030 AS (NO), Shell International Exploration & Production B.V. (NL), Shell International Trading & Shipping Company Limited (UK), Ektank AB (SE), Neste Oyj (FI), Fartygskonstruktioner AB (SE), Blom Maritime AS (NO), Teco Solutions AS (NO), Umoe Advanced Composites AS (NO). They are all experienced in providing services and commercializing products in the hydrogen and/or maritime fields. The consortium also counts with the participation of an academic partner, Universitetet i Tromsø - Norges Arktiske Universitet (NO).

Status

SIGNED

Call topic

HORIZON-CL5-2022-D5-01-04

Update Date

09-02-2023
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Zero Emission Waterborne Transport Partnership (ZEWT)
ZEWT Partnership Call 2022
HORIZON-CL5-2022-D5-01-04 Transformation of the existing fleet towards greener operations through retrofitting (ZEWT Partnership)
Horizon Europe
HORIZON.2 Global Challenges and European Industrial Competitiveness
HORIZON.2.5 Climate, Energy and Mobility
HORIZON.2.5.6 Industrial Competitiveness in Transport
HORIZON-CL5-2022-D5-01
HORIZON-CL5-2022-D5-01-04 Transformation of the existing fleet towards greener operations through retrofitting (ZEWT Partnership)
HORIZON.2.5.7 Clean, Safe and Accessible Transport and Mobility
HORIZON-CL5-2022-D5-01
HORIZON-CL5-2022-D5-01-04 Transformation of the existing fleet towards greener operations through retrofitting (ZEWT Partnership)