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Bead-Shaped Mesoporous Alumina Adsorbents for Adsorption of Ammonia

It is of great importance to remove toxic gases by efficient methods for recovering the atmosphere to safe levels. The adsorption of the toxic gas molecules on solid adsorbents is one of the most useful techniques because of its simple operation and economic feasibility. Here, we report the uniform...

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Autores principales: Kim, Jiyull, Lee, Hyeonkyeong, Vo, Huyen Thanh, Lee, Gwoungwoo, Kim, Nayeon, Jang, Sejin, Joo, Ji Bong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7143451/
https://www.ncbi.nlm.nih.gov/pubmed/32197526
http://dx.doi.org/10.3390/ma13061375
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author Kim, Jiyull
Lee, Hyeonkyeong
Vo, Huyen Thanh
Lee, Gwoungwoo
Kim, Nayeon
Jang, Sejin
Joo, Ji Bong
author_facet Kim, Jiyull
Lee, Hyeonkyeong
Vo, Huyen Thanh
Lee, Gwoungwoo
Kim, Nayeon
Jang, Sejin
Joo, Ji Bong
author_sort Kim, Jiyull
collection PubMed
description It is of great importance to remove toxic gases by efficient methods for recovering the atmosphere to safe levels. The adsorption of the toxic gas molecules on solid adsorbents is one of the most useful techniques because of its simple operation and economic feasibility. Here, we report the uniform Bead-Shaped Mesoporous Alumina (BSMA) with tunable particle size for use as an adsorbent for removal of toxic ammonia. The BSMA particles with tunable diameters were synthesized by means of a sol–gel reaction of Al(NO(3))(3)∙9H(2)O as an alumina precursor in the presence of chitosan as a template. When the ammonia solution is added dropwise to the prepared viscose mixture containing chitosan, acetic acid, and the alumina precursor solution, the sol–gel condensation reaction of the alumina precursor occurs in the chitosan polymer metrics, resulting in bead-shaped chitosan-aluminum hydroxide particles. Then, final Bead-Shaped Mesoporous Alumina (BSMA) particles are obtained by calcination at a high temperature. During the synthesis, changing the mole ratio of the chitosan template to the alumina precursor allowed the particle diameter of the final bead sample to be finely controlled. In addition, the prepared BSMA particles have well-developed mesoporous characteristics with relatively large surface areas, which are beneficial for adsorption of gas molecules. In an ammonia adsorption experiment, the BSMA-1.5 sample, which has the smallest particle diameter among the bead samples, was the best in terms of adsorption capacity. In this manuscript, we systemically discuss the relationship between the characteristics of BSMA samples and their adsorption of ammonia.
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spelling pubmed-71434512020-04-14 Bead-Shaped Mesoporous Alumina Adsorbents for Adsorption of Ammonia Kim, Jiyull Lee, Hyeonkyeong Vo, Huyen Thanh Lee, Gwoungwoo Kim, Nayeon Jang, Sejin Joo, Ji Bong Materials (Basel) Article It is of great importance to remove toxic gases by efficient methods for recovering the atmosphere to safe levels. The adsorption of the toxic gas molecules on solid adsorbents is one of the most useful techniques because of its simple operation and economic feasibility. Here, we report the uniform Bead-Shaped Mesoporous Alumina (BSMA) with tunable particle size for use as an adsorbent for removal of toxic ammonia. The BSMA particles with tunable diameters were synthesized by means of a sol–gel reaction of Al(NO(3))(3)∙9H(2)O as an alumina precursor in the presence of chitosan as a template. When the ammonia solution is added dropwise to the prepared viscose mixture containing chitosan, acetic acid, and the alumina precursor solution, the sol–gel condensation reaction of the alumina precursor occurs in the chitosan polymer metrics, resulting in bead-shaped chitosan-aluminum hydroxide particles. Then, final Bead-Shaped Mesoporous Alumina (BSMA) particles are obtained by calcination at a high temperature. During the synthesis, changing the mole ratio of the chitosan template to the alumina precursor allowed the particle diameter of the final bead sample to be finely controlled. In addition, the prepared BSMA particles have well-developed mesoporous characteristics with relatively large surface areas, which are beneficial for adsorption of gas molecules. In an ammonia adsorption experiment, the BSMA-1.5 sample, which has the smallest particle diameter among the bead samples, was the best in terms of adsorption capacity. In this manuscript, we systemically discuss the relationship between the characteristics of BSMA samples and their adsorption of ammonia. MDPI 2020-03-18 /pmc/articles/PMC7143451/ /pubmed/32197526 http://dx.doi.org/10.3390/ma13061375 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
Kim, Jiyull
Lee, Hyeonkyeong
Vo, Huyen Thanh
Lee, Gwoungwoo
Kim, Nayeon
Jang, Sejin
Joo, Ji Bong
Bead-Shaped Mesoporous Alumina Adsorbents for Adsorption of Ammonia
title Bead-Shaped Mesoporous Alumina Adsorbents for Adsorption of Ammonia
title_full Bead-Shaped Mesoporous Alumina Adsorbents for Adsorption of Ammonia
title_fullStr Bead-Shaped Mesoporous Alumina Adsorbents for Adsorption of Ammonia
title_full_unstemmed Bead-Shaped Mesoporous Alumina Adsorbents for Adsorption of Ammonia
title_short Bead-Shaped Mesoporous Alumina Adsorbents for Adsorption of Ammonia
title_sort bead-shaped mesoporous alumina adsorbents for adsorption of ammonia
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7143451/
https://www.ncbi.nlm.nih.gov/pubmed/32197526
http://dx.doi.org/10.3390/ma13061375
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