Reducing the use of Fossil Carbon and Fuels to Defossilize the Electric Steelmaking Route: Evaluation of the Effects of Alternative C-Bearing Materials and Hydrogen in the Electric Arc Furnace

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Main Authors: MATINO, Ismael, Toscanelli, Orlando, Zaccara, Antonella, Soto, Aintzane, Zubero Lombardia, Asier, Hermosa, Jon, Rodriguez Duràn, Tamara, Colla, Valentina
Format: Recurso digital
Language:English
Published: Zenodo 2026
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author MATINO, Ismael
Toscanelli, Orlando
Zaccara, Antonella
Soto, Aintzane
Zubero Lombardia, Asier
Hermosa, Jon
Rodriguez Duràn, Tamara
Colla, Valentina
author_facet MATINO, Ismael
Toscanelli, Orlando
Zaccara, Antonella
Soto, Aintzane
Zubero Lombardia, Asier
Hermosa, Jon
Rodriguez Duràn, Tamara
Colla, Valentina
contents <p>The paper describes the investigations on the effects of using alternative carbon sources in the Electric Arc Furnace, which have been carried out via industrial trials and complementary simulations employing a flowsheet model of the entire electric route in the context of the project entitled "<em>Gradual integration of REnewable non-fossil ENergy sources and modular HEATing technologies in EAF for progressive CO2 decrease</em>" (Ref GreenHeatEAF - Grant Agreement No. 101092328). The project received funding from the European Union through the Horizon Europe programme.</p>
format Recurso digital
id zenodo_https___doi_org_10_1002_srin_202501085
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Reducing the use of Fossil Carbon and Fuels to Defossilize the Electric Steelmaking Route: Evaluation of the Effects of Alternative C-Bearing Materials and Hydrogen in the Electric Arc Furnace
MATINO, Ismael
Toscanelli, Orlando
Zaccara, Antonella
Soto, Aintzane
Zubero Lombardia, Asier
Hermosa, Jon
Rodriguez Duràn, Tamara
Colla, Valentina
alternative carbon bearing materials
electric steelmaking
hydrogen
simulation
industrial trials
sustainability
<p>The paper describes the investigations on the effects of using alternative carbon sources in the Electric Arc Furnace, which have been carried out via industrial trials and complementary simulations employing a flowsheet model of the entire electric route in the context of the project entitled "<em>Gradual integration of REnewable non-fossil ENergy sources and modular HEATing technologies in EAF for progressive CO2 decrease</em>" (Ref GreenHeatEAF - Grant Agreement No. 101092328). The project received funding from the European Union through the Horizon Europe programme.</p>
title Reducing the use of Fossil Carbon and Fuels to Defossilize the Electric Steelmaking Route: Evaluation of the Effects of Alternative C-Bearing Materials and Hydrogen in the Electric Arc Furnace
topic alternative carbon bearing materials
electric steelmaking
hydrogen
simulation
industrial trials
sustainability
url https://doi.org/10.1002/srin.202501085