Steel Production De Nora to Supply New Electrolytic H2 Generation System for Hytecheat Project

Source: Press release De Nora 2 min Reading Time

Related Vendors

The Hytecheat project aims to make use of hybrid technologies for the production of steel with low CO2 emissions. De Nora will supply the new 1 MW capacity Dragonfly on-site electrolytic hydrogen generation system for the project.

De Nora will supply the new 1 MW capacity Dragonfly on-site electrolytic hydrogen generation system, contributing to emissions’ reduction in a traditionally hard-to-abate sector.(Source:  De Nora)
De Nora will supply the new 1 MW capacity Dragonfly on-site electrolytic hydrogen generation system, contributing to emissions’ reduction in a traditionally hard-to-abate sector.
(Source: De Nora)

Milan/Italy – Industrie De Nora, an Italian multinational specializing in electrochemistry, a leader in sustainable technologies and the emerging green hydrogen industry, is one of the Partners in the European project ‘Hytecheat’, along with, among others, Snam and Tenova. This project involves the use of hybrid technologies for the production of steel with low CO2 emissions.

De Nora will supply the new 1 MW capacity Dragonfly on-site electrolytic hydrogen generation system, contributing to emissions’ reduction in a traditionally hard-to-abate sector.

The Hytecheat (Hybrid Technologies for sustainable steel reheating) project is an initiative part of the ‘Horizon Europe’ program, funded by the European Union with about 3.3 million euros. The project envisages the use of the Dragonfly system in steel production processes, an activity that is energy-intensive and therefore highly impactful on an environmental level. The goal is to reduce this impact in the heat treatment and heating stages, which are still exclusively based on natural gas, by increasing the percentage of low-carbon hydrogen used in these processes in a more and more virtuous hybridization of the two resources.

Stay up to Date

Do you want the latest news, specialist articles and information on new products? Then you can register for our free newsletter:

Choose your Newsletter

This is the first use case of the new Dragonfly electrolyzer, an innovative product developed by De Nora as a natural evolution of the company's vast experience in electrode design and production. The high performance of this new product is possible thanks to the use of DSA electrodes, developed by De Nora, which guarantee maximum efficiency.

In particular, the electrolyzer makes it possible to meet the needs of a wide range of industries that require on-site hydrogen generation, such as the chemical, pharmaceutical, biogas, oleochemical, and refinery industries, as it is a small unit designed to be installed at the end customer's facility. The system, that has been in testing at an industrial site for more than a year and has already obtained all certifications to operate, is now for the first time being used in a project of European significance.

In this particular case, project partner Tenova will host this best-case demonstration with the support of Snam, which will oversee the hydrogen storage system.

Paolo Dellachà, CEO of De Nora, commented, "We are proud to announce our participation as a partner in this project of European significance, which will represent the first use case of the new Dragonfly electrolyzer, a versatile and high-quality product that will make our role as facilitators of the energy transition even easier. The market launch of this solution is the tangible result of our significant investments in R&D, which is key to maintaining our position as a company at the forefront of the sectors where we operate”.

(ID:49954109)

Subscribe to the newsletter now

Don't Miss out on Our Best Content

By clicking on „Subscribe to Newsletter“ I agree to the processing and use of my data according to the consent form (please expand for details) and accept the Terms of Use. For more information, please see our Privacy Policy. The consent declaration relates, among other things, to the sending of editorial newsletters by email and to data matching for marketing purposes with selected advertising partners (e.g., LinkedIn, Google, Meta)

Unfold for details of your consent