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Continuous Phosphate Removal and Recovery Using a Calcium Silicate Hydrate Composite Monolithic Cryogel Column

Toward the development of a practical and green approach for removing phosphate from water, a monolithic cryogel based on starch and calcium silicate hydrate (Cry–CSH) was employed as a phosphate adsorbent in a continuous flow system for the first time. The influence of flow rate, initial phosphate...

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Autores principales: Phawachalotorn, Chanadda, Wongniramaikul, Worawit, Taweekarn, Tarawee, Kleangklao, Bussakorn, Pisitaro, Wachiraporn, Limsakul, Wadcharawadee, Sriprom, Wilasinee, Towanlong, Wanchitra, Choodum, Aree
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9921571/
https://www.ncbi.nlm.nih.gov/pubmed/36771839
http://dx.doi.org/10.3390/polym15030539
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author Phawachalotorn, Chanadda
Wongniramaikul, Worawit
Taweekarn, Tarawee
Kleangklao, Bussakorn
Pisitaro, Wachiraporn
Limsakul, Wadcharawadee
Sriprom, Wilasinee
Towanlong, Wanchitra
Choodum, Aree
author_facet Phawachalotorn, Chanadda
Wongniramaikul, Worawit
Taweekarn, Tarawee
Kleangklao, Bussakorn
Pisitaro, Wachiraporn
Limsakul, Wadcharawadee
Sriprom, Wilasinee
Towanlong, Wanchitra
Choodum, Aree
author_sort Phawachalotorn, Chanadda
collection PubMed
description Toward the development of a practical and green approach for removing phosphate from water, a monolithic cryogel based on starch and calcium silicate hydrate (Cry–CSH) was employed as a phosphate adsorbent in a continuous flow system for the first time. The influence of flow rate, initial phosphate concentration, and adsorbent height on the adsorption efficiency was investigated. As the rate of flow and the initial concentration of phosphate increased, the total quantity of adsorbed phosphate dropped; however, the performance of the column was greatly enhanced by an increase in adsorbent height. The experimental data fit the Adams–Bohart model better than the Thomas and Yoon–Nelson models at the beginning of the adsorption process. To evaluate its applicability, the continuous flow system based on the monolithic Cry–CSH column was applied for the removal of phosphate from the discharge effluent of the Patong Municipality Wastewater Treatment Plant (Phuket, Thailand), achieving an excellent total adsorption of 94.61%.
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spelling pubmed-99215712023-02-12 Continuous Phosphate Removal and Recovery Using a Calcium Silicate Hydrate Composite Monolithic Cryogel Column Phawachalotorn, Chanadda Wongniramaikul, Worawit Taweekarn, Tarawee Kleangklao, Bussakorn Pisitaro, Wachiraporn Limsakul, Wadcharawadee Sriprom, Wilasinee Towanlong, Wanchitra Choodum, Aree Polymers (Basel) Article Toward the development of a practical and green approach for removing phosphate from water, a monolithic cryogel based on starch and calcium silicate hydrate (Cry–CSH) was employed as a phosphate adsorbent in a continuous flow system for the first time. The influence of flow rate, initial phosphate concentration, and adsorbent height on the adsorption efficiency was investigated. As the rate of flow and the initial concentration of phosphate increased, the total quantity of adsorbed phosphate dropped; however, the performance of the column was greatly enhanced by an increase in adsorbent height. The experimental data fit the Adams–Bohart model better than the Thomas and Yoon–Nelson models at the beginning of the adsorption process. To evaluate its applicability, the continuous flow system based on the monolithic Cry–CSH column was applied for the removal of phosphate from the discharge effluent of the Patong Municipality Wastewater Treatment Plant (Phuket, Thailand), achieving an excellent total adsorption of 94.61%. MDPI 2023-01-20 /pmc/articles/PMC9921571/ /pubmed/36771839 http://dx.doi.org/10.3390/polym15030539 Text en © 2023 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
Phawachalotorn, Chanadda
Wongniramaikul, Worawit
Taweekarn, Tarawee
Kleangklao, Bussakorn
Pisitaro, Wachiraporn
Limsakul, Wadcharawadee
Sriprom, Wilasinee
Towanlong, Wanchitra
Choodum, Aree
Continuous Phosphate Removal and Recovery Using a Calcium Silicate Hydrate Composite Monolithic Cryogel Column
title Continuous Phosphate Removal and Recovery Using a Calcium Silicate Hydrate Composite Monolithic Cryogel Column
title_full Continuous Phosphate Removal and Recovery Using a Calcium Silicate Hydrate Composite Monolithic Cryogel Column
title_fullStr Continuous Phosphate Removal and Recovery Using a Calcium Silicate Hydrate Composite Monolithic Cryogel Column
title_full_unstemmed Continuous Phosphate Removal and Recovery Using a Calcium Silicate Hydrate Composite Monolithic Cryogel Column
title_short Continuous Phosphate Removal and Recovery Using a Calcium Silicate Hydrate Composite Monolithic Cryogel Column
title_sort continuous phosphate removal and recovery using a calcium silicate hydrate composite monolithic cryogel column
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9921571/
https://www.ncbi.nlm.nih.gov/pubmed/36771839
http://dx.doi.org/10.3390/polym15030539
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