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Haver & Boecker oHG Drahtweberei und Maschinenfabrik Carl-Haver-Platz 3 59302 Oelde, Germany http://www.haverboecker.com/de/
Contact Mr Lars Wegner 02522 30 8136

Engineer’s Guide to Hydrogen: Wire mesh solutions for more efficient electrolysis, H₂ filtration, and scalable industrial hydrogen processes

An interactive Engineer’s Guide demonstrates how 3D wire mesh improves electrolysis and H₂ filtration in PEM, AEM, and AEL systems, optimizes water and gas transport, enhances electrode performance, and enables scalable hydrogen production

(PresseBox) (Oelde, )
With the new interactive Engineer’s Guide Hydrogen – Wire mesh solutions for highly efficient electrolysis and filtration processes, Haver & Boecker presents a technically sound and practice‑oriented publication that demonstrates how precise mesh increases the efficiency of modern hydrogen processes.

Industrial hydrogen production requires materials that withstand chemical, thermal, and mechanical loads – while also being suitable for reproducible series manufacturing. The Engineer’s Guide explains how 3D wire mesh stabilizes water and gas transport in PEM and AEM stacks, how specialized nickel mesh improves electrode performance in AEL systems, and how multilayer mesh laminates ensure reliable filtration at pressures exceeding 700 bar. These properties have a direct positive impact on efficiency, service life, and operating costs – and become increasingly important as scaling continues.

HyVentus case study: 3D PTL mesh for higher-performance PEM / AEM electrolysers

A notable example is the HyVentus research project, in which Haver & Boecker developed a three‑dimensional PTL mesh made of titanium. Its geometry prevents gas bubble entrapment and improves membrane contact. At the same time, the mesh is suitable for continuous production processes – a key step toward series-ready gigafactory manufacturing.

Precision that drives H processes forward

The clearly definable geometry of wire mesh enables precise simulation of volume flows, velocities, pressures, temperature profiles, and flow lines – a decisive advantage when designing efficient H₂ processes. “With the Engineer’s Guide, we provide engineers with a tool that highlights the technical relevance of wire mesh throughout the entire value chain and presents the functionality and cost efficiency of our solutions in a balanced and accessible way,” explains Lars Wegner, Hydrogen Project Manager at Haver & Boecker.

The guide is aimed at development and system engineers, design engineers, and process engineers in electrolysis and filtration applications, as well as component manufacturers, plant builders, and technical‑strategic decision-makers – in other words, anyone who needs robust, scalable, and economical solutions for industrial ramp-up. The Engineer’s Guide is available free of charge and accessible digitally.

Haver & Boecker oHG Drahtweberei und Maschinenfabrik

Die Haver & Boecker oHG ist ein familiengeführtes mittelständisches Unternehmen mit Hauptsitz in Oelde, Westfalen, und den Unternehmensbereichen Drahtweberei und Maschinenfabrik.
Gegründet im Jahr 1887, hat sich das Unternehmen von einer handwerklich geprägten Drahtweberei zu einem weltweit agierenden Lösungsanbieter entwickelt.
Gemeinsam mit über 50 Tochterunternehmen und 150 Vertretungen auf allen fünf Kontinenten ist HAVER & BOECKER weltweit mit rund 3.000 Mitarbeitern tätig.
Das Unternehmen entwickelt und produziert Drahtgewebeprodukte für Industrie, Technik, Architektur und Design sowie Maschinen, Technologien und Anlagen für das Lagern, Verpacken und Versenden von Schüttgütern und Flüssigkeiten.

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The publisher indicated in each case (see company info by clicking on image/title or company info in the right-hand column) is solely responsible for the stories above, the event or job offer shown and for the image and audio material displayed. As a rule, the publisher is also the author of the texts and the attached image, audio and information material. The use of information published here is generally free of charge for personal information and editorial processing. Please clarify any copyright issues with the stated publisher before further use. In case of publication, please send a specimen copy to service@pressebox.de.