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Confined La(2)O(3) particles in mesoporous carbon material for enhanced phosphate adsorption

Novel phosphate adsorbents with confined La(2)O(3) inside mesoporous carbon were fabricated by the solid-state grinding method using pristine mesoporous carbon material CMK-3 (PCMK-3) and oxidized CMK-3 (OCMK-3) as the matrixes (denoted as La(2)O(3)@PCMK-3 and La(2)O(3)@OCMK-3). Compared with pure L...

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Autores principales: Ju, Xiaoqiu, Cui, He, Liu, Tao, Sun, Yabing, Zheng, Shourong, Qu, Xiaolei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8334834/
https://www.ncbi.nlm.nih.gov/pubmed/34386256
http://dx.doi.org/10.1098/rsos.210428
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author Ju, Xiaoqiu
Cui, He
Liu, Tao
Sun, Yabing
Zheng, Shourong
Qu, Xiaolei
author_facet Ju, Xiaoqiu
Cui, He
Liu, Tao
Sun, Yabing
Zheng, Shourong
Qu, Xiaolei
author_sort Ju, Xiaoqiu
collection PubMed
description Novel phosphate adsorbents with confined La(2)O(3) inside mesoporous carbon were fabricated by the solid-state grinding method using pristine mesoporous carbon material CMK-3 (PCMK-3) and oxidized CMK-3 (OCMK-3) as the matrixes (denoted as La(2)O(3)@PCMK-3 and La(2)O(3)@OCMK-3). Compared with pure La(2)O(3), La(2)O(3)@PCMK-3 and La(2)O(3)@OCMK-3 exhibited higher normalized phosphate adsorption capacity, indicative of efficient loading of La(2)O(3) inside the mesopores of the carbon materials. Furthermore, La(2)O(3) loading led to substantially enhanced phosphate adsorption. The adsorption capacities of La(2)O(3)@OCMK-3 samples were higher than those of La(2)O(3)@PCMK-3 samples, possibly owing to the oxygen-containing groups forming in OCMK-3 during HNO(3) oxidation, which enhanced the dispersion of La(2)O(3) in the mesopores of OCMK-3. The adsorption capacities of La(2)O(3)@PCMK-3 and La(2)O(3)@OCMK-3 increased with the La(2)O(3) loading amount. Phosphate adsorption onto La(2)O(3)(14.7)@PCMK-3 followed the pseudo-second-order kinetics with respect to correlation coefficient values (larger than 0.99). As pH increased from 3.4 to 12.0, the phosphate adsorption amounts of La(2)O(3)(14.7)@PCMK-3 and La(2)O(3)(15.7)@OCMK-3 decreased from 37.64 mg g(−1) and 37.08 mg g(−1) to 21.92 mg g(−1) and 14.18 mg g(−1), respectively. Additionally, La(2)O(3)@PCMK-3 showed higher adsorption selectivity towards phosphate than coexisting Cl(−), [Formula: see text] and [Formula: see text]. The adsorbent La(2)O(3)(14.7)@PCMK-3 remained stable after five regeneration cycles.
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spelling pubmed-83348342021-08-11 Confined La(2)O(3) particles in mesoporous carbon material for enhanced phosphate adsorption Ju, Xiaoqiu Cui, He Liu, Tao Sun, Yabing Zheng, Shourong Qu, Xiaolei R Soc Open Sci Chemistry Novel phosphate adsorbents with confined La(2)O(3) inside mesoporous carbon were fabricated by the solid-state grinding method using pristine mesoporous carbon material CMK-3 (PCMK-3) and oxidized CMK-3 (OCMK-3) as the matrixes (denoted as La(2)O(3)@PCMK-3 and La(2)O(3)@OCMK-3). Compared with pure La(2)O(3), La(2)O(3)@PCMK-3 and La(2)O(3)@OCMK-3 exhibited higher normalized phosphate adsorption capacity, indicative of efficient loading of La(2)O(3) inside the mesopores of the carbon materials. Furthermore, La(2)O(3) loading led to substantially enhanced phosphate adsorption. The adsorption capacities of La(2)O(3)@OCMK-3 samples were higher than those of La(2)O(3)@PCMK-3 samples, possibly owing to the oxygen-containing groups forming in OCMK-3 during HNO(3) oxidation, which enhanced the dispersion of La(2)O(3) in the mesopores of OCMK-3. The adsorption capacities of La(2)O(3)@PCMK-3 and La(2)O(3)@OCMK-3 increased with the La(2)O(3) loading amount. Phosphate adsorption onto La(2)O(3)(14.7)@PCMK-3 followed the pseudo-second-order kinetics with respect to correlation coefficient values (larger than 0.99). As pH increased from 3.4 to 12.0, the phosphate adsorption amounts of La(2)O(3)(14.7)@PCMK-3 and La(2)O(3)(15.7)@OCMK-3 decreased from 37.64 mg g(−1) and 37.08 mg g(−1) to 21.92 mg g(−1) and 14.18 mg g(−1), respectively. Additionally, La(2)O(3)@PCMK-3 showed higher adsorption selectivity towards phosphate than coexisting Cl(−), [Formula: see text] and [Formula: see text]. The adsorbent La(2)O(3)(14.7)@PCMK-3 remained stable after five regeneration cycles. The Royal Society 2021-08-04 /pmc/articles/PMC8334834/ /pubmed/34386256 http://dx.doi.org/10.1098/rsos.210428 Text en © 2021 The Authors. https://creativecommons.org/licenses/by/4.0/Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, provided the original author and source are credited.
spellingShingle Chemistry
Ju, Xiaoqiu
Cui, He
Liu, Tao
Sun, Yabing
Zheng, Shourong
Qu, Xiaolei
Confined La(2)O(3) particles in mesoporous carbon material for enhanced phosphate adsorption
title Confined La(2)O(3) particles in mesoporous carbon material for enhanced phosphate adsorption
title_full Confined La(2)O(3) particles in mesoporous carbon material for enhanced phosphate adsorption
title_fullStr Confined La(2)O(3) particles in mesoporous carbon material for enhanced phosphate adsorption
title_full_unstemmed Confined La(2)O(3) particles in mesoporous carbon material for enhanced phosphate adsorption
title_short Confined La(2)O(3) particles in mesoporous carbon material for enhanced phosphate adsorption
title_sort confined la(2)o(3) particles in mesoporous carbon material for enhanced phosphate adsorption
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8334834/
https://www.ncbi.nlm.nih.gov/pubmed/34386256
http://dx.doi.org/10.1098/rsos.210428
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