SPACER · Shaping Porous Electrode Architecture to Improve Current Density and Energy Efficiency in Redox Flow Batteries
„Хоризонт Европа“ — Действия „Мария Склодовска-Кюри“
- Период
- 2025-09-01 → 2029-08-31
- Финансиране от ЕС
- 4 462 932 €
- Участници
- 21
- Схема
- HORIZON-TMA-MSCA-DN
Линиите свързват координатора с партньорите.
Накратко на български
Електроди с многослойна пореста структура за проточни батерии се разработват чрез 3D принтиране и моделиране. Те ще помогнат за повишаване на енергийната ефективност и намаляване на разходите за съхранение на енергия.
Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.
Цел на проекта
The energy transition has increased demand for energy storage, including long-duration storage solutions like redox-flow batteries (RFBs). But RFBs are limited by a high levelized cost of storage, due in part to inefficient electrode use and the lack of tailored RFB components.SPACER will develop high-power-density electrodes for RFBs, with a max. power density of ca. 1Acm-2 and energy efficiencies >85-90% at relevant current densities (20-30% higher than conventional electrodes). The expected cost is up to 50% less than conventional electrodes.SPACER’s approach is the use of hierarchical structures, i.e. complex multilayer materials. Work will entail:• Multiscale modelling to better understand RFB behavior and identify hierarchically shaped pore structures for optimum electrolyte and electric flow• Prototyping of the modelled structures via stereolithic (micro-), 3D printing (meso-) and textile (macroscale) techniques • Characterization of prototypes via cutting-edge imaging techniques like EPR to validate the models and electrode performanceThree development cycles (micro-, meso- and macroscale) will provide insight into complex interactions and optimal material structures, and culminate in electrodes validated in mini-stacks by industrial partner PIN (TRL6). The intended applications are established (vanadium) and next-gen (HBr) RFBs.SPACER will give 17 DCs a unique skill set spanning electrochemistry, modelling, material science and cell engineering. The employability of the DCs will be further enhanced by high-quality individual training in scientific and soft skills, and structured network training units moving them from theoretical investigations toward industrial application. The involvement of 2 industrial beneficiaries and a non-funded Industrial Board, secondments in applied research and industry, and a strong training emphasis on market needs will equip the DCs with the intersectoral skills needed for a career in electrochemical energy storage.
Оригинален текст от CORDIS (на английски).
Участници
- FRAUNHOFER GESELLSCHAFT ZUR FORDERUNG DER ANGEWANDTEN FORSCHUNG EV · MunchenКоординаторГермания
- AvCarb Material Solutions LLC · LowellСъединени щати
- BRUKER BIOSPIN GMBH & CO KG · ETTLINGENГермания
- CHALMERS TEKNISKA HOGSKOLA AB · GoteborgШвеция
- DANMARKS TEKNISKE UNIVERSITET · Kongens LyngbyДания
- E-Storage Engineering srl · Legnago VRИталия
- ELESTOR BV · ARNHEMНидерландия
- Fureho AB · GoteborgШвеция
- GOLIN WISSENSCHAFTSMANAGEMENT, Dr. Simon GolinГермания
- PINFLOW ENERGY STORAGE, S.R.O. · PrahaЧехия
- TECHNISCHE UNIVERSITEIT EINDHOVEN · EindhovenНидерландия
- THE UNIVERSITY OF QUEENSLAND · BrisbaneАвстралия
- UNIVERSITA DEGLI STUDI DI PADOVA · PadovaИталия
- UNIVERSITAET INNSBRUCK · InnsbruckАвстрия
- UNIVERSITAT BAYREUTH · BayreuthГермания
- UNIVERSITY OF NEW SOUTH WALES · SydneyАвстралия
- UNIVERSITY OF STUTTGART · StuttgartГермания
- VYSOKA SKOLA CHEMICKO-TECHNOLOGICKA V PRAZE · PRAHAЧехия
- VYSOKE UCENI TECHNICKE V BRNE · BRNO STREDЧехия
- Volterion GmbH · DortmundГермания
- ZURCHER HOCHSCHULE FUR ANGEWANDTE WISSENSCHAFTEN · WinterthurШвейцария
Връзки
Данни: CORDIS, © Европейски съюз
