H2020Индивидуална стипендия2020–2025

Thin-CATALYzER · Nanostructured anode catalyst layer for oxygen evolution reaction based on a novel thin-film architecture

„Хоризонт 2020“ — Действия „Мария Склодовска-Кюри“

Период
2020-09-01 → 2025-02-05
Финансиране от ЕС
150 040 €
Участници
1
Схема
MSCA-IF

Линиите свързват координатора с партньорите.

Накратко на български

Наноструктурираният катализатор за електролизатори с полимерна мембрана помага за по-ефективно разделяне на водата до водород и кислород. Това улеснява съхранението на енергия от възобновяеми източници, като слънце и вятър, под формата на синтетично гориво.

Този кратък обзор е генериран от изкуствен интелект

Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.

Резултати накратко

Nanostructured anode catalyst layer for oxygen evolution reaction based on a novel thin-film architecture

The development of secure, clean and efficient energy represents a fundamental societal challenge for Europe. Enormous technological challenges are awaiting not just in relation to the substitution of carbon-based fuels and systems but also to a rational utilization of the power generated by renewable sources (e.g. sun, wind), which are abundant but intermittent in nature, therefore requiring the development of an efficient energy storage back-up system. In such a scenario, power-to-gas technology, which relies on the production of a synthetic fuel by using electric power, is a very powerful approach as it is able to fulfill a number of functions. They include electrical energy storage in the form of hydrogen or its derivatives, production of carbon-free fuel for industry and mobility, transportation of energy via a gas distribution grid and supply of stand-alone systems. In the power-to-gas process, water electrolysis, by which electricity is used to split water into molecular hydrogen and oxygen, plays a central role. Since the commercially available alkaline water electrolysis cells (which are based on anion exchange membranes) are insufficient for responding to the future demands in power-to-gas-systems owing to their low current density, the low purity of the produced H2 and the low dynamics, alternative technologies have recently come to the fore. Among these, Proton Exchange Membranes Electrolysis Cells (PEMECs), whose core is a solid polymer electrolyte, exhibit a number of highly competitive technological advantages. Owing to the high power density, the high gas purity, the rapid system response, the large dynamic range of operation and the compact design, PEMECs are ideal for operating in synergy with intermittent and variable power sources such as renewables. PEMEC systems are a novel technology which will greatly benefit from innovation deriving from R&D activities. The project Thin-CATALYzER (thin-film based CATalyst LaYer for oxygen Evolution Reaction) promotes the practical implementation of PEMECs by developing a novel thin-film based platform for fundamental investigations and for the fabrication of a technologically relevant catalyst layer, which serves both to gain new understanding on the fundamental mechanisms of water electrolysis and for tackling some of the main current limitations of state-of-the-art PEMEC systems.

Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз

Цел на проекта

The transformation of energy coming from renewable sources into gas with the purpose of storage and transportation (power-to-gas) is a powerful approach for the development of new-generation secure, clean, efficient energy systems. Key step in such a process is electrolysis, which utilizes electrical current for splitting water into oxygen and hydrogen. While the present electrolysis technology (anion exchange cells) is insufficient for covering the future demands, polymer-based cells (PEMECs) represent an emerging alternative for becoming the key-enabling technology in power-to-gas systems. Thin-CATALYzER aims at making an important step towards the implementation of PEMECs at large scale by introducing an innovative paradigm based on thin-film technology for the fabrication of an efficient, durable and sustainable PEMEC anode catalyst layer. This will serve both as an end-product possessing a high level of technological readiness and as a platform for achieving new information on the fundamental reaction mechanisms. Thin-CATALYzER tackles the current limitations of PEMEC anodes as it takes advantage of a single-step physical deposition process (PLD) for obtaining a nanostructured catalyst layer with high level of purity and of noble metal utilization, optimized meso- and microstructure, to be deposited on ceramic single crystals or on a commercial support according to the needs. Besides, the project comprises a program for the professional growth of the ER by training-through-research in catalysis and related techniques and for the development of complementary skills. This will be achieved thanks to the commitment of the host institution and of the action partners (academic and industrial), which possess a highly qualified and intersectorial knowledge. Lastly, the action promotes a two-way transfer of knowledge and the development of an extended network for all the actors involved.

Оригинален текст от CORDIS (на английски).

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Данни: CORDIS, © Европейски съюз