Bio-Based Corrosion Defense: Exploring Domestic Waste for Sustainable Steel Protection

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Autori principali: Hazriel Faizal Pahroraji, Siti Khadijah Alias, Haryana Mohd Hairi, Mohd Alfatihhi Mohd Szali Januddi, Bulan Abdullah, Masalina Md Ali
Natura: Recurso digital
Pubblicazione: Zenodo 2025
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author Hazriel Faizal Pahroraji
Siti Khadijah Alias
Haryana Mohd Hairi
Mohd Alfatihhi Mohd Szali Januddi
Bulan Abdullah
Masalina Md Ali
author_facet Hazriel Faizal Pahroraji
Siti Khadijah Alias
Haryana Mohd Hairi
Mohd Alfatihhi Mohd Szali Januddi
Bulan Abdullah
Masalina Md Ali
contents <p><span>Significant attention to the presence of corrosion control during both the design and operational phases, including efforts in corrosion monitoring. Domestic waste has shown potential as an ecological corrosion inhibitor for carbon steel when exposed to 1 M Hydrochloric acid solution. Various concentrations of the waste were tested on carbon steel in an acidic environment through weight loss measurements over 7, 14, and 21 days. The results indicated that higher concentrations enhanced the corrosion resistance of the steel, with a maximum inhibition efficiency of 98.28%. In conclusion, domestic waste is an effective natural corrosion inhibitor that helps protect the steel surface and minimizes corrosion in carbon steel.</span></p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_15616945
institution Zenodo
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publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Bio-Based Corrosion Defense: Exploring Domestic Waste for Sustainable Steel Protection
Hazriel Faizal Pahroraji
Siti Khadijah Alias
Haryana Mohd Hairi
Mohd Alfatihhi Mohd Szali Januddi
Bulan Abdullah
Masalina Md Ali
<p><span>Significant attention to the presence of corrosion control during both the design and operational phases, including efforts in corrosion monitoring. Domestic waste has shown potential as an ecological corrosion inhibitor for carbon steel when exposed to 1 M Hydrochloric acid solution. Various concentrations of the waste were tested on carbon steel in an acidic environment through weight loss measurements over 7, 14, and 21 days. The results indicated that higher concentrations enhanced the corrosion resistance of the steel, with a maximum inhibition efficiency of 98.28%. In conclusion, domestic waste is an effective natural corrosion inhibitor that helps protect the steel surface and minimizes corrosion in carbon steel.</span></p>
title Bio-Based Corrosion Defense: Exploring Domestic Waste for Sustainable Steel Protection
url https://doi.org/10.5281/zenodo.15616945