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An eco-friendly route for template-free synthesis of high specific surface area mesoporous CeO(2) powders and their adsorption for acid orange 7

An eco-friendly route was developed for the synthesis of mesoporous CeO(2) powders without any additional template. The original cerium precursors were separated from Ce(3+) aqueous solution by (NH(4))(2)CO(3) or Na(2)CO(3)via a chemical precipitation method, then H(2)O(2) was introduced to induce t...

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Autores principales: Xu, Yaohui, Li, Ruixing, Zhou, Yang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9066840/
https://www.ncbi.nlm.nih.gov/pubmed/35519489
http://dx.doi.org/10.1039/c9ra02294e
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author Xu, Yaohui
Li, Ruixing
Zhou, Yang
author_facet Xu, Yaohui
Li, Ruixing
Zhou, Yang
author_sort Xu, Yaohui
collection PubMed
description An eco-friendly route was developed for the synthesis of mesoporous CeO(2) powders without any additional template. The original cerium precursors were separated from Ce(3+) aqueous solution by (NH(4))(2)CO(3) or Na(2)CO(3)via a chemical precipitation method, then H(2)O(2) was introduced to induce the phase transformation from original cerium precursors to CeO(2) precursors with initial porous structures, finally the crystallinities of CeO(2) precursors were improved by a hydrothermal treatment, meanwhile the mesoporous structures of final CeO(2) powders were formed. The BET surface areas of mesoporous CeO(2) powders synthesized using (NH(4))(2)CO(3) and Na(2)CO(3) as precipitants were 106.1 and 76.9 m(2) g(−1), respectively. Moreover, a mesoporous CeO(2) sample with BET surface area of 100.0 m(2) g(−1) was also synthesized using commercial Ce(2)(CO(3))(3)·xH(2)O as an existing cerium precursor under the same conditions as control, which could shorten experimental processes and reduce costs. The oxidation-induced phase transformation from original cerium precursors to CeO(2) precursors with initial porous structures was the precondition for further forming of mesoporous structures of final CeO(2) powders during the hydrothermal process. These mesoporous CeO(2) powders showed the rapid and effective adsorption for acid orange 7 dye from simulated wastewater without pH pre-adjustment at room temperature. Furthermore, the adsorption capacities of these mesoporous CeO(2) powders for removal of acid orange 7 dye were determined according to the Langmuir linear fits.
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spelling pubmed-90668402022-05-04 An eco-friendly route for template-free synthesis of high specific surface area mesoporous CeO(2) powders and their adsorption for acid orange 7 Xu, Yaohui Li, Ruixing Zhou, Yang RSC Adv Chemistry An eco-friendly route was developed for the synthesis of mesoporous CeO(2) powders without any additional template. The original cerium precursors were separated from Ce(3+) aqueous solution by (NH(4))(2)CO(3) or Na(2)CO(3)via a chemical precipitation method, then H(2)O(2) was introduced to induce the phase transformation from original cerium precursors to CeO(2) precursors with initial porous structures, finally the crystallinities of CeO(2) precursors were improved by a hydrothermal treatment, meanwhile the mesoporous structures of final CeO(2) powders were formed. The BET surface areas of mesoporous CeO(2) powders synthesized using (NH(4))(2)CO(3) and Na(2)CO(3) as precipitants were 106.1 and 76.9 m(2) g(−1), respectively. Moreover, a mesoporous CeO(2) sample with BET surface area of 100.0 m(2) g(−1) was also synthesized using commercial Ce(2)(CO(3))(3)·xH(2)O as an existing cerium precursor under the same conditions as control, which could shorten experimental processes and reduce costs. The oxidation-induced phase transformation from original cerium precursors to CeO(2) precursors with initial porous structures was the precondition for further forming of mesoporous structures of final CeO(2) powders during the hydrothermal process. These mesoporous CeO(2) powders showed the rapid and effective adsorption for acid orange 7 dye from simulated wastewater without pH pre-adjustment at room temperature. Furthermore, the adsorption capacities of these mesoporous CeO(2) powders for removal of acid orange 7 dye were determined according to the Langmuir linear fits. The Royal Society of Chemistry 2019-07-18 /pmc/articles/PMC9066840/ /pubmed/35519489 http://dx.doi.org/10.1039/c9ra02294e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Xu, Yaohui
Li, Ruixing
Zhou, Yang
An eco-friendly route for template-free synthesis of high specific surface area mesoporous CeO(2) powders and their adsorption for acid orange 7
title An eco-friendly route for template-free synthesis of high specific surface area mesoporous CeO(2) powders and their adsorption for acid orange 7
title_full An eco-friendly route for template-free synthesis of high specific surface area mesoporous CeO(2) powders and their adsorption for acid orange 7
title_fullStr An eco-friendly route for template-free synthesis of high specific surface area mesoporous CeO(2) powders and their adsorption for acid orange 7
title_full_unstemmed An eco-friendly route for template-free synthesis of high specific surface area mesoporous CeO(2) powders and their adsorption for acid orange 7
title_short An eco-friendly route for template-free synthesis of high specific surface area mesoporous CeO(2) powders and their adsorption for acid orange 7
title_sort eco-friendly route for template-free synthesis of high specific surface area mesoporous ceo(2) powders and their adsorption for acid orange 7
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9066840/
https://www.ncbi.nlm.nih.gov/pubmed/35519489
http://dx.doi.org/10.1039/c9ra02294e
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