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Epoxy Composites Reinforced with ZnO from Waste Alkaline Batteries

The zinc alkaline battery is one of the most popular sources of portable electrical energy, with more than 300,000 tons being consumed per year. Accordingly, it is critical to recycle its components. In this work, we propose the use of zinc oxide (ZnO) microparticles recovered from worn-out batterie...

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Autores principales: Lorero, Isaac, Campo, Mónica, Arribas, Carmen, Prolongo, Margarita Gonzalez, López, Felix Antonio, Prolongo, Silvia G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9031787/
https://www.ncbi.nlm.nih.gov/pubmed/35454535
http://dx.doi.org/10.3390/ma15082842
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author Lorero, Isaac
Campo, Mónica
Arribas, Carmen
Prolongo, Margarita Gonzalez
López, Felix Antonio
Prolongo, Silvia G.
author_facet Lorero, Isaac
Campo, Mónica
Arribas, Carmen
Prolongo, Margarita Gonzalez
López, Felix Antonio
Prolongo, Silvia G.
author_sort Lorero, Isaac
collection PubMed
description The zinc alkaline battery is one of the most popular sources of portable electrical energy, with more than 300,000 tons being consumed per year. Accordingly, it is critical to recycle its components. In this work, we propose the use of zinc oxide (ZnO) microparticles recovered from worn-out batteries as fillers of epoxy resins. These nanocomposites can be used as protective coatings or pigments and as structural composites with high thermal stability. The addition of ceramic nanofillers, such as ZnO or/and TiO(2), could enhance the thermal and mechanical properties, and the hardness and hydrophobicity, of the epoxy resins, depending on several factors. Accordingly, different nanocomposites reinforced with recycled ZnO and commercial ZnO and TiO(2) nanoparticles have been manufactured with different nanofiller contents. In addition to the different ceramic oxides, the morphology and size of fillers are different. Recycled ZnO are“desert roses” such as microparticles, commercial ZnO are rectangular parallelepipeds nanoparticles, and commercial TiO(2) are smaller spherical nanoparticles. The addition of ceramic fillers produces a small increase of the glass transition temperature (<2%), together with an enhancement of the barrier effect of the epoxy resin, reducing the water diffusion coefficient (<21%), although the maximum water uptake remains constant. The nanocomposite water absorption is fully reversible by subsequent thermal treatment, recovering its initial thermomechanical behavior. The water angle contact (WCA) also increases (~12%) with the presence of ceramic particles, although the highest hydrophobicity (35%) is obtained when the epoxy resin reinforced with recycled flowerlike ZnO microparticles is etched with acid stearic and acetic acid, inducing the corrosion of the ZnO on the surface and therefore the increment of the surface roughness. The presence of desert rose ZnO particles enhances the de lotus effect.
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spelling pubmed-90317872022-04-23 Epoxy Composites Reinforced with ZnO from Waste Alkaline Batteries Lorero, Isaac Campo, Mónica Arribas, Carmen Prolongo, Margarita Gonzalez López, Felix Antonio Prolongo, Silvia G. Materials (Basel) Article The zinc alkaline battery is one of the most popular sources of portable electrical energy, with more than 300,000 tons being consumed per year. Accordingly, it is critical to recycle its components. In this work, we propose the use of zinc oxide (ZnO) microparticles recovered from worn-out batteries as fillers of epoxy resins. These nanocomposites can be used as protective coatings or pigments and as structural composites with high thermal stability. The addition of ceramic nanofillers, such as ZnO or/and TiO(2), could enhance the thermal and mechanical properties, and the hardness and hydrophobicity, of the epoxy resins, depending on several factors. Accordingly, different nanocomposites reinforced with recycled ZnO and commercial ZnO and TiO(2) nanoparticles have been manufactured with different nanofiller contents. In addition to the different ceramic oxides, the morphology and size of fillers are different. Recycled ZnO are“desert roses” such as microparticles, commercial ZnO are rectangular parallelepipeds nanoparticles, and commercial TiO(2) are smaller spherical nanoparticles. The addition of ceramic fillers produces a small increase of the glass transition temperature (<2%), together with an enhancement of the barrier effect of the epoxy resin, reducing the water diffusion coefficient (<21%), although the maximum water uptake remains constant. The nanocomposite water absorption is fully reversible by subsequent thermal treatment, recovering its initial thermomechanical behavior. The water angle contact (WCA) also increases (~12%) with the presence of ceramic particles, although the highest hydrophobicity (35%) is obtained when the epoxy resin reinforced with recycled flowerlike ZnO microparticles is etched with acid stearic and acetic acid, inducing the corrosion of the ZnO on the surface and therefore the increment of the surface roughness. The presence of desert rose ZnO particles enhances the de lotus effect. MDPI 2022-04-13 /pmc/articles/PMC9031787/ /pubmed/35454535 http://dx.doi.org/10.3390/ma15082842 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lorero, Isaac
Campo, Mónica
Arribas, Carmen
Prolongo, Margarita Gonzalez
López, Felix Antonio
Prolongo, Silvia G.
Epoxy Composites Reinforced with ZnO from Waste Alkaline Batteries
title Epoxy Composites Reinforced with ZnO from Waste Alkaline Batteries
title_full Epoxy Composites Reinforced with ZnO from Waste Alkaline Batteries
title_fullStr Epoxy Composites Reinforced with ZnO from Waste Alkaline Batteries
title_full_unstemmed Epoxy Composites Reinforced with ZnO from Waste Alkaline Batteries
title_short Epoxy Composites Reinforced with ZnO from Waste Alkaline Batteries
title_sort epoxy composites reinforced with zno from waste alkaline batteries
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9031787/
https://www.ncbi.nlm.nih.gov/pubmed/35454535
http://dx.doi.org/10.3390/ma15082842
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