Skip to main content
Go to the home page of the European Commission (opens in new window)
English en
CORDIS - EU research results
CORDIS

Carbon Utilization through Renewable Electrolysis in Acidic, Alkali-Free System

Project description

Efficient acidic CO2 electrolyser against rising CO2 emissions

Rising CO2 emissions pose a major global challenge. Current methods for converting CO2 into useful products lack efficiency. Traditional electrochemical systems operating under alkaline or neutral conditions can achieve activity and selectivity but suffer from significant CO2 loss, low single-pass utilisation, poor stability and high separation costs. Supported by the Marie Skłodowska-Curie Actions programme, the CURE project will develop an efficient acidic CO2 electrolyser to combat rising CO2 emissions. It will feature innovative proton-transport membranes, non-metallic cations for stability and optimised assemblies for long-term use. The goals include 100 % utilisation of CO2, over 50 % selectivity for multicarbon products and more than 500 hours of stability, significantly advancing current technologies while supporting Europe’s carbon-neutral transition.

Objective

Rising CO2 emissions are a major global challenge, and current methods for converting CO2 into useful products are not efficient enough. Conventional electrochemical systems, which rely on alkaline or near-neutral conditions, can achieve activity and selectivity but suffer from severe CO2 loss, low single pass utilization, poor stability, and costly product separation.
CURE seeks to develop a new type of CO2 electrolyzer that is both carbon- and energy-efficient by combining innovations at the system (novel membrane concepts to control proton availability) aRising CO2 emissions pose a significant global challenge, and current methods for converting CO2 into useful products are not sufficiently efficient. Conventional electrochemical systems, which rely on alkaline or near-neutral conditions, can achieve activity and selectivity but suffer from severe CO2 loss, low single pass utilization, poor stability, and costly product separation.
The CURE project advances an ambitious vision to develop a new type of acidic CO2 electrolyzer that is both carbon- and energy-efficient. Its design combines three innovations: proton transport tunable membranes to suppress hydrogen evolution while maintaining CO2 reduction, non-metal cations at catalyst interfaces to stabilize reaction intermediates and promote carbon-carbon coupling, and optimized membrane electrode assemblies that integrate cathode, anode, and membrane for long term stability and scalability.
This new approach will deliver an acidic CO2 electrolysis platform with 100% single pass CO2 utilization, ≥50% selectivity toward multicarbon products, and ≥500 hours of stability, representing a fivefold improvement over the state of the art. Beyond technological breakthroughs, CURE will establish design principles that accelerate the deployment of next-generation CO2 electrolyzers, accelerating the deployment of sustainable electrochemical technologies and contributing to Europe's transition toward a carbon-neutral economy.

Fields of science (EuroSciVoc)

CORDIS classifies projects with EuroSciVoc, a multilingual taxonomy of fields of science, through a semi-automatic process based on NLP techniques. See: The European Science Vocabulary.

You need to log in or register to use this function

Keywords

Project’s keywords as indicated by the project coordinator. Not to be confused with the EuroSciVoc taxonomy (Fields of science)

Programme(s)

Multi-annual funding programmes that define the EU’s priorities for research and innovation.

Topic(s)

Calls for proposals are divided into topics. A topic defines a specific subject or area for which applicants can submit proposals. The description of a topic comprises its specific scope and the expected impact of the funded project.

Funding Scheme

Funding scheme (or “Type of Action”) inside a programme with common features. It specifies: the scope of what is funded; the reimbursement rate; specific evaluation criteria to qualify for funding; and the use of simplified forms of costs like lump sums.

HORIZON-TMA-MSCA-PF-EF - HORIZON TMA MSCA Postdoctoral Fellowships - European Fellowships

See all projects funded under this funding scheme

Call for proposal

Procedure for inviting applicants to submit project proposals, with the aim of receiving EU funding.

(opens in new window) HORIZON-MSCA-2025-PF

See all projects funded under this call

Coordinator

FUNDACIO INSTITUT DE CIENCIES FOTONIQUES
Net EU contribution

Net EU financial contribution. The sum of money that the participant receives, deducted by the EU contribution to its linked third party. It considers the distribution of the EU financial contribution between direct beneficiaries of the project and other types of participants, like third-party participants.

€ 194 074,56
Address
AVINGUDA CARL FRIEDRICH GAUSS 3
08860 Castelldefels
Spain

See on map

Region
Este Cataluña Barcelona
Activity type
Research Organisations
Links
Total cost

The total costs incurred by this organisation to participate in the project, including direct and indirect costs. This amount is a subset of the overall project budget.

No data