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Towards Upscaling of La(5.5)WO(11.25−δ) Manufacture for Plasma Spraying-Thin Film Coated Hydrogen Permeable Membranes

Lanthanum tungstate (La(6)WO(12)) is a promising material for the development of hydrogen separation membranes, proton ceramic electrolyzer cells and protonic ceramic fuel cells due to its interesting transport properties and stability under different operation conditions. In order to improve the hy...

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Autores principales: Escolástico, Sonia, Solís, Cecilia, Comite, Antonio, Azzurri, Fiorenza, Gindrat, Malko, Moser, Stefan, Rauch, Johannes, Szyndelman, Gregory, Damani, Rajiv, Serra, Jose M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7560138/
https://www.ncbi.nlm.nih.gov/pubmed/32824887
http://dx.doi.org/10.3390/membranes10090192
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author Escolástico, Sonia
Solís, Cecilia
Comite, Antonio
Azzurri, Fiorenza
Gindrat, Malko
Moser, Stefan
Rauch, Johannes
Szyndelman, Gregory
Damani, Rajiv
Serra, Jose M.
author_facet Escolástico, Sonia
Solís, Cecilia
Comite, Antonio
Azzurri, Fiorenza
Gindrat, Malko
Moser, Stefan
Rauch, Johannes
Szyndelman, Gregory
Damani, Rajiv
Serra, Jose M.
author_sort Escolástico, Sonia
collection PubMed
description Lanthanum tungstate (La(6)WO(12)) is a promising material for the development of hydrogen separation membranes, proton ceramic electrolyzer cells and protonic ceramic fuel cells due to its interesting transport properties and stability under different operation conditions. In order to improve the hydrogen transport through the La(6)WO(12) membranes, thin membranes should be manufactured. This work is based on the industrial production of La(5.5)WO(11.25−δ) (LWO) powder by spray drying and the manufacturing of thin membranes by low-pressure plasma spraying (LPPS-TF) technique. LPPS-TF allows the production of dense thin films of high quality in an industrial scale. The powders produced by spray drying were morphological and electrochemically characterized. Hydrogen permeation fluxes of a membrane manufactured with these powders were evaluated and fluxes are similar to those reported previously for LWO powder produced in the lab scale. Finally, the transport properties of LWO thin films deposited on Al(2)O(3) indicate that LPPS-TF produces high-quality LWO films with potential for integration in different applications.
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spelling pubmed-75601382020-10-22 Towards Upscaling of La(5.5)WO(11.25−δ) Manufacture for Plasma Spraying-Thin Film Coated Hydrogen Permeable Membranes Escolástico, Sonia Solís, Cecilia Comite, Antonio Azzurri, Fiorenza Gindrat, Malko Moser, Stefan Rauch, Johannes Szyndelman, Gregory Damani, Rajiv Serra, Jose M. Membranes (Basel) Article Lanthanum tungstate (La(6)WO(12)) is a promising material for the development of hydrogen separation membranes, proton ceramic electrolyzer cells and protonic ceramic fuel cells due to its interesting transport properties and stability under different operation conditions. In order to improve the hydrogen transport through the La(6)WO(12) membranes, thin membranes should be manufactured. This work is based on the industrial production of La(5.5)WO(11.25−δ) (LWO) powder by spray drying and the manufacturing of thin membranes by low-pressure plasma spraying (LPPS-TF) technique. LPPS-TF allows the production of dense thin films of high quality in an industrial scale. The powders produced by spray drying were morphological and electrochemically characterized. Hydrogen permeation fluxes of a membrane manufactured with these powders were evaluated and fluxes are similar to those reported previously for LWO powder produced in the lab scale. Finally, the transport properties of LWO thin films deposited on Al(2)O(3) indicate that LPPS-TF produces high-quality LWO films with potential for integration in different applications. MDPI 2020-08-19 /pmc/articles/PMC7560138/ /pubmed/32824887 http://dx.doi.org/10.3390/membranes10090192 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Escolástico, Sonia
Solís, Cecilia
Comite, Antonio
Azzurri, Fiorenza
Gindrat, Malko
Moser, Stefan
Rauch, Johannes
Szyndelman, Gregory
Damani, Rajiv
Serra, Jose M.
Towards Upscaling of La(5.5)WO(11.25−δ) Manufacture for Plasma Spraying-Thin Film Coated Hydrogen Permeable Membranes
title Towards Upscaling of La(5.5)WO(11.25−δ) Manufacture for Plasma Spraying-Thin Film Coated Hydrogen Permeable Membranes
title_full Towards Upscaling of La(5.5)WO(11.25−δ) Manufacture for Plasma Spraying-Thin Film Coated Hydrogen Permeable Membranes
title_fullStr Towards Upscaling of La(5.5)WO(11.25−δ) Manufacture for Plasma Spraying-Thin Film Coated Hydrogen Permeable Membranes
title_full_unstemmed Towards Upscaling of La(5.5)WO(11.25−δ) Manufacture for Plasma Spraying-Thin Film Coated Hydrogen Permeable Membranes
title_short Towards Upscaling of La(5.5)WO(11.25−δ) Manufacture for Plasma Spraying-Thin Film Coated Hydrogen Permeable Membranes
title_sort towards upscaling of la(5.5)wo(11.25−δ) manufacture for plasma spraying-thin film coated hydrogen permeable membranes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7560138/
https://www.ncbi.nlm.nih.gov/pubmed/32824887
http://dx.doi.org/10.3390/membranes10090192
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