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Synthesis of mesoporous lanthanum hydroxide with enhanced adsorption performance for phosphate removal

Phosphate is a ubiquitous pollutant in aquatic systems, and increasingly stringent post-treatment phosphate effluent standards necessitate increasingly efficient removal techniques. In this study, mesoporous lanthanum hydroxide (MLHO) was synthesized by a hard-template method using ordered mesoporou...

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Autores principales: Kim, Kyungmin, Kim, Dujin, Kim, Taeyeon, Kim, Bong-Geun, Ko, Donghyun, Lee, Junsoo, Han, Yujin, Jung, Ji Chul, Na, Hyon Bin
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/PMC9064240/
https://www.ncbi.nlm.nih.gov/pubmed/35514812
http://dx.doi.org/10.1039/c9ra00895k
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author Kim, Kyungmin
Kim, Dujin
Kim, Taeyeon
Kim, Bong-Geun
Ko, Donghyun
Lee, Junsoo
Han, Yujin
Jung, Ji Chul
Na, Hyon Bin
author_facet Kim, Kyungmin
Kim, Dujin
Kim, Taeyeon
Kim, Bong-Geun
Ko, Donghyun
Lee, Junsoo
Han, Yujin
Jung, Ji Chul
Na, Hyon Bin
author_sort Kim, Kyungmin
collection PubMed
description Phosphate is a ubiquitous pollutant in aquatic systems, and increasingly stringent post-treatment phosphate effluent standards necessitate increasingly efficient removal techniques. In this study, mesoporous lanthanum hydroxide (MLHO) was synthesized by a hard-template method using ordered mesoporous silica, and its potential as an adsorbent for high-efficiency phosphate removal in aqueous solutions was tested. The porosity characteristics of MLHOs were controlled by adjusting the template structure and synthesis conditions. MLHO adsorbents showed great potential for phosphate removal from solutions containing both high and low initial phosphate concentrations. The phosphate adsorption capacity of MLHO strongly depended on its surface area as this process was governed by monolayer adsorption. Moreover, the phosphate removal performance of MLHO was affected by its structural properties. MLHO showed a high adsorption capacity of 109.41 mg P g(−1) at 28 °C (q(m) by the Langmuir isotherm model). Further, it showed ultrafast adsorption in a solution with low initial concentration of 2 mg P/L; within the first 10 min, 99.8% of phosphate was removed, and the phosphorus concentration remaining in the solution dramatically reduced to 4 μg P/L. These findings suggest that MLHO adsorbent is a good candidate for rapid and efficient low-concentration phosphate removal to meet the increasingly stringent discharge standards for wastewater treatment plants.
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spelling pubmed-90642402022-05-04 Synthesis of mesoporous lanthanum hydroxide with enhanced adsorption performance for phosphate removal Kim, Kyungmin Kim, Dujin Kim, Taeyeon Kim, Bong-Geun Ko, Donghyun Lee, Junsoo Han, Yujin Jung, Ji Chul Na, Hyon Bin RSC Adv Chemistry Phosphate is a ubiquitous pollutant in aquatic systems, and increasingly stringent post-treatment phosphate effluent standards necessitate increasingly efficient removal techniques. In this study, mesoporous lanthanum hydroxide (MLHO) was synthesized by a hard-template method using ordered mesoporous silica, and its potential as an adsorbent for high-efficiency phosphate removal in aqueous solutions was tested. The porosity characteristics of MLHOs were controlled by adjusting the template structure and synthesis conditions. MLHO adsorbents showed great potential for phosphate removal from solutions containing both high and low initial phosphate concentrations. The phosphate adsorption capacity of MLHO strongly depended on its surface area as this process was governed by monolayer adsorption. Moreover, the phosphate removal performance of MLHO was affected by its structural properties. MLHO showed a high adsorption capacity of 109.41 mg P g(−1) at 28 °C (q(m) by the Langmuir isotherm model). Further, it showed ultrafast adsorption in a solution with low initial concentration of 2 mg P/L; within the first 10 min, 99.8% of phosphate was removed, and the phosphorus concentration remaining in the solution dramatically reduced to 4 μg P/L. These findings suggest that MLHO adsorbent is a good candidate for rapid and efficient low-concentration phosphate removal to meet the increasingly stringent discharge standards for wastewater treatment plants. The Royal Society of Chemistry 2019-05-16 /pmc/articles/PMC9064240/ /pubmed/35514812 http://dx.doi.org/10.1039/c9ra00895k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Kim, Kyungmin
Kim, Dujin
Kim, Taeyeon
Kim, Bong-Geun
Ko, Donghyun
Lee, Junsoo
Han, Yujin
Jung, Ji Chul
Na, Hyon Bin
Synthesis of mesoporous lanthanum hydroxide with enhanced adsorption performance for phosphate removal
title Synthesis of mesoporous lanthanum hydroxide with enhanced adsorption performance for phosphate removal
title_full Synthesis of mesoporous lanthanum hydroxide with enhanced adsorption performance for phosphate removal
title_fullStr Synthesis of mesoporous lanthanum hydroxide with enhanced adsorption performance for phosphate removal
title_full_unstemmed Synthesis of mesoporous lanthanum hydroxide with enhanced adsorption performance for phosphate removal
title_short Synthesis of mesoporous lanthanum hydroxide with enhanced adsorption performance for phosphate removal
title_sort synthesis of mesoporous lanthanum hydroxide with enhanced adsorption performance for phosphate removal
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9064240/
https://www.ncbi.nlm.nih.gov/pubmed/35514812
http://dx.doi.org/10.1039/c9ra00895k
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