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1000 Titel
  • Resource-Efficient Gigawatt Water Electrolysis in Germany—A Circular Economy Potential Analysis
1000 Autor/in
  1. Matz, Levin |
  2. Bensmann, Boris |
  3. Hanke-Rauschenbach, Richard |
  4. Minke, Christine |
1000 Verlag
  • Springer International Publishing
1000 Erscheinungsjahr 2024
1000 Publikationstyp
  1. Artikel |
1000 Online veröffentlicht
  • 2024-02-03
1000 Erschienen in
1000 Quellenangabe
  • 4(2):1153-1182
1000 Copyrightjahr
  • 2024
1000 Lizenz
1000 Verlagsversion
  • https://doi.org/10.1007/s43615-024-00345-x |
1000 Publikationsstatus
1000 Begutachtungsstatus
1000 Sprache der Publikation
1000 Abstract/Summary
  • <jats:title>Abstract</jats:title><jats:p>Green hydrogen will play a key role in the future energy system. For the production of green hydrogen, an installation of alkaline (AWE) and proton exchange membrane water electrolysis (PEMWE) of several gigawatts per year is projected in the upcoming decades. The development of the hydrogen economy is associated with a great demand for scarce and expensive resources. To reduce resource demand and avoid supply bottlenecks, actions toward a circular economy are required. In the present study, three circular economy actions (repair, reuse, and recycling) are analyzed with regard to AWE and PEMWE installation taking Germany as an example. It is found that, so far, only recycling is a viable strategy for a circular economy. For further analysis, a model is developed to assess the impact of recycling on resource demand for AWE and PEMWE scale-up. Mass flows from end-of-life recycling are intergrated into the model, and their economic value is estimated. The results imply that closed-loop recycling can reduce the cumulated primary resource demand by up to 50% in the long run. However, recycling will first be relevant after 2040, while water electrolysis capacities installed before still depend on primary materials. The outlook on the economic value of the recycling materials indicates a volume of up to 2.15 B € per decade for PEMWE and 0.98 B € per decade for AWE recycling. To realize the potential, a recycling industry specialized for those technolgies considering the whole value chain covering dismantling, collection, and recycling must be introduced.</jats:p>
1000 Sacherschließung
lokal Original Paper
lokal Hydrogen economy
lokal Alkaline water electrolysis
lokal Circular economy
lokal 3 R’s
lokal Proton exchange membrane water electrolysis
1000 Fächerklassifikation (DDC)
1000 Liste der Beteiligten
  1. https://orcid.org/0000-0002-9369-208X|https://orcid.org/0000-0001-8685-7192|https://orcid.org/0000-0002-1958-307X|https://orcid.org/0000-0003-0481-2850
1000 Hinweis
  • DeepGreen-ID: f5c73bad70f64895ad0833010aff4dba ; metadata provieded by: DeepGreen (https://www.oa-deepgreen.de/api/v1/), LIVIVO search scope life sciences (http://z3950.zbmed.de:6210/livivo), Crossref Unified Resource API (https://api.crossref.org/swagger-ui/index.html), to.science.api (https://frl.publisso.de/), ZDB JSON-API (beta) (https://zeitschriftendatenbank.de/api/), lobid - Dateninfrastruktur für Bibliotheken (https://lobid.org/resources/search)
1000 Label
1000 Förderer
  1. Niedersächsisches Ministerium für Wissenschaft und Kultur |
  2. Niedersächsische Ministerium für Wissenschaft und Kultur |
  3. Technische Universität Clausthal |
1000 Fördernummer
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1000 Förderprogramm
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1000 Dateien
1000 Förderung
  1. 1000 joinedFunding-child
    1000 Förderer Niedersächsisches Ministerium für Wissenschaft und Kultur |
    1000 Förderprogramm -
    1000 Fördernummer -
  2. 1000 joinedFunding-child
    1000 Förderer Niedersächsische Ministerium für Wissenschaft und Kultur |
    1000 Förderprogramm -
    1000 Fördernummer -
  3. 1000 joinedFunding-child
    1000 Förderer Technische Universität Clausthal |
    1000 Förderprogramm -
    1000 Fördernummer -
1000 Objektart article
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1000 @id frl:6504959.rdf
1000 Erstellt am 2025-02-06T04:39:28.225+0100
1000 Erstellt von 322
1000 beschreibt frl:6504959
1000 Zuletzt bearbeitet 2025-07-30T14:17:51.403+0200
1000 Objekt bearb. Wed Jul 30 14:17:51 CEST 2025
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