Fabrication of polyaniline/waste sugarcane bagasse composite fillers for excellent anti-corrosion protective coatings
Herein, biomass-based anti-corrosion composite fillers for water-based epoxy resin coatings, epoxy resin powder coatings, and efficient anticorrosive coatings were successfully prepared. Polyaniline/sugarcane bagasse composites (PANI-SCB) were prepared by in situ polymerization after the sugarcane b...
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Veröffentlicht in: | New journal of chemistry 2024-03, Vol.48 (11), p.481-482 |
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Hauptverfasser: | , , , , , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Herein, biomass-based anti-corrosion composite fillers for water-based epoxy resin coatings, epoxy resin powder coatings, and efficient anticorrosive coatings were successfully prepared. Polyaniline/sugarcane bagasse composites (PANI-SCB) were prepared by
in situ
polymerization after the sugarcane bagasse was ground into a powder with a planetary ball mill. SEM results showed that a large number of loose polyaniline particles were formed on the surface of bagasse. Electrochemical testing showed that the water-based epoxy resin coating with 1% PANI-SCB had a low corrosion current density (5.466 × 10
−7
A cm
−2
) and the highest low-frequency impedance modulus (34 260 Ω cm
−2
). The high protection efficiency (99.57%) and slow decline in impedance with a long soaking time indicated satisfactory anti-corrosion performance. On this basis, the prepared powder coating with 3% PANI-SCB presented a low corrosion current and high protection efficiency (99.39%). In addition, the powder coating had considerable adhesion fastness, flexibility, and commercially viable chemical resistance. XRD analysis found that the presence of Fe
2
O
3
and Fe
3
O
4
in the corrosion products can effectively induce the formation of a dense passivation film, thereby improving the corrosion resistance. The economic and environmental composite coating is expected to function in the anti-corrosion maintenance of hydropower station facilities.
Herein, biomass-based anti-corrosion composite fillers for water-based epoxy resin coatings, epoxy resin powder coatings, and efficient anticorrosive coatings were successfully prepared. |
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ISSN: | 1144-0546 1369-9261 |
DOI: | 10.1039/d3nj05901d |