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Study on the Synthesis of High-Purity γ-Phase Mesoporous Alumina with Excellent CO(2) Adsorption Performance via a Simple Method Using Industrial Aluminum Oxide as Raw Material

To mitigate the global greenhouse effect and the waste of carbon dioxide, a chemical raw material, high-purity γ-phase mesoporous alumina (MA) with excellent CO(2) adsorption performance was synthesized by the direct aging method and ammonium salt substitution method. With this process, not only can...

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Autores principales: Li, Zhonglin, Wang, Ding, Shen, Jialong, Chen, Junxue, Wu, Chengzhi, Qu, Zizheng, Luo, Kun, Meng, Zhengbing, Li, Yibing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8509456/
https://www.ncbi.nlm.nih.gov/pubmed/34639863
http://dx.doi.org/10.3390/ma14195465
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author Li, Zhonglin
Wang, Ding
Shen, Jialong
Chen, Junxue
Wu, Chengzhi
Qu, Zizheng
Luo, Kun
Meng, Zhengbing
Li, Yibing
author_facet Li, Zhonglin
Wang, Ding
Shen, Jialong
Chen, Junxue
Wu, Chengzhi
Qu, Zizheng
Luo, Kun
Meng, Zhengbing
Li, Yibing
author_sort Li, Zhonglin
collection PubMed
description To mitigate the global greenhouse effect and the waste of carbon dioxide, a chemical raw material, high-purity γ-phase mesoporous alumina (MA) with excellent CO(2) adsorption performance was synthesized by the direct aging method and ammonium salt substitution method. With this process, not only can energy consumption and time be shortened to a large extent but the final waste can also be recycled to the mother liquor by adding calcium hydroxide. Reaction conditions, i.e., pH value, calcination temperature, and desodium agent, were investigated in detail with the aid of X-ray fluorescence spectrum (XRF), X-ray diffraction (XRD), scanning electron microscopy (SEM), Brunauer–Emmett–Teller (BET) and Barret-Joyner-Hallender (BJH) methods, nonlocal density functional theory (NLDFT), transmission electron microscopy (TEM), temperature-programmed desorption of CO(2) (CO(2)-TPD), and presented CO(2) adsorption measurement. The results of this study are summarized as follows: the impurity content of the MA synthesized under optimal conditions is less than 0.01%, and its total removal rate of impurities is 99.299%. It was found that the MA adsorbent has a large specific surface area of 377.8 m(2)/g, pore volume of 0.55 cm(3)/g, and its average pore diameter is 3.1 nm. Under the condition of a gas flow rate of 20 cm(3)/min, its CO(2) adsorption capacity is 1.58 mmol/g, and after 8 times of cyclic adsorption, the amount of CO(2) adsorption remained basically unchanged, both of which indicate that the material has excellent adsorption properties and can be widely used for the adsorption of carbon dioxide.
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spelling pubmed-85094562021-10-13 Study on the Synthesis of High-Purity γ-Phase Mesoporous Alumina with Excellent CO(2) Adsorption Performance via a Simple Method Using Industrial Aluminum Oxide as Raw Material Li, Zhonglin Wang, Ding Shen, Jialong Chen, Junxue Wu, Chengzhi Qu, Zizheng Luo, Kun Meng, Zhengbing Li, Yibing Materials (Basel) Article To mitigate the global greenhouse effect and the waste of carbon dioxide, a chemical raw material, high-purity γ-phase mesoporous alumina (MA) with excellent CO(2) adsorption performance was synthesized by the direct aging method and ammonium salt substitution method. With this process, not only can energy consumption and time be shortened to a large extent but the final waste can also be recycled to the mother liquor by adding calcium hydroxide. Reaction conditions, i.e., pH value, calcination temperature, and desodium agent, were investigated in detail with the aid of X-ray fluorescence spectrum (XRF), X-ray diffraction (XRD), scanning electron microscopy (SEM), Brunauer–Emmett–Teller (BET) and Barret-Joyner-Hallender (BJH) methods, nonlocal density functional theory (NLDFT), transmission electron microscopy (TEM), temperature-programmed desorption of CO(2) (CO(2)-TPD), and presented CO(2) adsorption measurement. The results of this study are summarized as follows: the impurity content of the MA synthesized under optimal conditions is less than 0.01%, and its total removal rate of impurities is 99.299%. It was found that the MA adsorbent has a large specific surface area of 377.8 m(2)/g, pore volume of 0.55 cm(3)/g, and its average pore diameter is 3.1 nm. Under the condition of a gas flow rate of 20 cm(3)/min, its CO(2) adsorption capacity is 1.58 mmol/g, and after 8 times of cyclic adsorption, the amount of CO(2) adsorption remained basically unchanged, both of which indicate that the material has excellent adsorption properties and can be widely used for the adsorption of carbon dioxide. MDPI 2021-09-22 /pmc/articles/PMC8509456/ /pubmed/34639863 http://dx.doi.org/10.3390/ma14195465 Text en © 2021 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
Li, Zhonglin
Wang, Ding
Shen, Jialong
Chen, Junxue
Wu, Chengzhi
Qu, Zizheng
Luo, Kun
Meng, Zhengbing
Li, Yibing
Study on the Synthesis of High-Purity γ-Phase Mesoporous Alumina with Excellent CO(2) Adsorption Performance via a Simple Method Using Industrial Aluminum Oxide as Raw Material
title Study on the Synthesis of High-Purity γ-Phase Mesoporous Alumina with Excellent CO(2) Adsorption Performance via a Simple Method Using Industrial Aluminum Oxide as Raw Material
title_full Study on the Synthesis of High-Purity γ-Phase Mesoporous Alumina with Excellent CO(2) Adsorption Performance via a Simple Method Using Industrial Aluminum Oxide as Raw Material
title_fullStr Study on the Synthesis of High-Purity γ-Phase Mesoporous Alumina with Excellent CO(2) Adsorption Performance via a Simple Method Using Industrial Aluminum Oxide as Raw Material
title_full_unstemmed Study on the Synthesis of High-Purity γ-Phase Mesoporous Alumina with Excellent CO(2) Adsorption Performance via a Simple Method Using Industrial Aluminum Oxide as Raw Material
title_short Study on the Synthesis of High-Purity γ-Phase Mesoporous Alumina with Excellent CO(2) Adsorption Performance via a Simple Method Using Industrial Aluminum Oxide as Raw Material
title_sort study on the synthesis of high-purity γ-phase mesoporous alumina with excellent co(2) adsorption performance via a simple method using industrial aluminum oxide as raw material
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8509456/
https://www.ncbi.nlm.nih.gov/pubmed/34639863
http://dx.doi.org/10.3390/ma14195465
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