SUPERCONDUCTING HYDROGEN ELECTROLYSIS: THEORETICAL AND EXPERIMENTAL VALIDATION

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author yildirim, begum
author_facet yildirim, begum
contents <p class="MsoNormal"><span>This study examines the impact of superconducting materials on hydrogen electrolysis processes and validates the theoretical model with experimental data. The use of superconducting electrodes minimizes energy losses in hydrogen production and enhances efficiency. Theoretical calculations indicate that superconducting electrolysis consumes less energy and provides 23% greater efficiency compared to conventional methods. The experimental data confirm the predictions of the model with high accuracy.</span></p> <br><br> <p><strong>Originality and AI-use statement:</strong><br> This work is an original research output by Begüm Yıldırım. AI tools, if used, were limited to language refinement, grammar correction, formatting, translation assistance, and clarity improvement. The conceptual framework, research direction, interpretation, models, and conclusions belong to the author. External sources, datasets, or prior works are cited where applicable.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_20286412
institution Zenodo
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publishDate 2026
publisher Zenodo
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spellingShingle SUPERCONDUCTING HYDROGEN ELECTROLYSIS: THEORETICAL AND EXPERIMENTAL VALIDATION
yildirim, begum
<p class="MsoNormal"><span>This study examines the impact of superconducting materials on hydrogen electrolysis processes and validates the theoretical model with experimental data. The use of superconducting electrodes minimizes energy losses in hydrogen production and enhances efficiency. Theoretical calculations indicate that superconducting electrolysis consumes less energy and provides 23% greater efficiency compared to conventional methods. The experimental data confirm the predictions of the model with high accuracy.</span></p> <br><br> <p><strong>Originality and AI-use statement:</strong><br> This work is an original research output by Begüm Yıldırım. AI tools, if used, were limited to language refinement, grammar correction, formatting, translation assistance, and clarity improvement. The conceptual framework, research direction, interpretation, models, and conclusions belong to the author. External sources, datasets, or prior works are cited where applicable.</p>
title SUPERCONDUCTING HYDROGEN ELECTROLYSIS: THEORETICAL AND EXPERIMENTAL VALIDATION
url https://doi.org/10.5281/zenodo.20286412