HyPLANT100: Industrialization from Assembly to the Construction Site for Gigawatt Electrolysis

Author:

Büsch Lukas1ORCID,Jakschik Malte2ORCID,Syniawa Daniel2ORCID,Masuhr Christian1ORCID,Christ Lukas2ORCID,Schachtsiek Jan2ORCID,Haalck Kay3,Nerlich Leon4,Frömsdorf Elisabeth4,Schirmack Nadine5,Ebert Benedikt6,Kirty Chaman7,Adler Patrick2ORCID,Schüppstuhl Thorsten1ORCID,Kuhlenkötter Bernd2ORCID

Affiliation:

1. Institute of Aircraft Production Technology, Hamburg University of Technology, Denickestraße 17, 21073 Hamburg, Germany

2. Chair of Production Systems (LPS), Ruhr-University Bochum, Industriestraße 38c, 44894 Bochum, Germany

3. Entwicklungsagentur Region Heide AöR, Hamburger Hof 3, 25746 Heide, Germany

4. FEST GmbH, Harzburger Straße 14, 38642 Goslar, Germany

5. Hypion GmbH, Hamburger Hof 3, 25746 Heide, Germany

6. IBG Automation GmbH, Osemundstraße 14-22, 58809 Neuenrade, Germany

7. H2 Core Systems GmbH, Rüsdorfer Straße 8, 25746 Heide, Germany

Abstract

The global push for sustainable energy has heightened the demand for green hydrogen, which is crucial for decarbonizing heavy industry. However, current electrolysis plant capacities are insufficient. This research addresses the challenge through optimizing large-scale electrolysis construction via standardization, modularization, process optimization, and automation. This paper introduces H2Giga, a project for mass-producing electrolyzers, and HyPLANT100, investigating large-scale electrolysis plant structure and construction processes. Modularizing electrolyzers enhances production efficiency and scalability. The integration of AutomationML facilitates seamless information exchange. A digital twin concept enables simulations, optimizations, and error identification before assembly. While construction site automation provides advantages, tasks like connection technologies and handling cables, tubes, and hoses require pre-assembly. This study identifies key tasks suitable for automation and estimating required components. The Enapter Multicore electrolyzer serves as a case study, showcasing robotic technology for tube fittings. In conclusion, this research underscores the significance of standardization, modularization, and automation in boosting the electrolysis production capacity for green hydrogen, contributing to ongoing efforts in decarbonizing the industrial sector and advancing the global energy transition.

Funder

Federal Ministry of Education and Research

Publisher

MDPI AG

Reference55 articles.

1. (2024, February 08). Fit for 55. Available online: https://www.consilium.europa.eu/en/policies/green-deal/fit-for-55-the-eu-plan-for-a-green-transition/.

2. A review on hydrogen production and utilization: Challenges and opportunities;Ishaq;Int. J. Hydrogen Energy,2022

3. On the cost competitiveness of blue and green hydrogen;Ueckerdt;Joule,2024

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5. Neugebauer, R. (2022). Wasserstofftechnologien, Springer eBook Collection; Springer.

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