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Green Treatment of Phosphate from Wastewater Using a Porous Bio-Templated Graphene Oxide/MgMn-Layered Double Hydroxide Composite

Excessive phosphorus in water is the primary culprit for eutrophication, which causes approximately $2.2 billion annual economic loss in the United States. This study demonstrates a phosphate-selective sustainable method by adopting Garcinia subelliptica leaves as a natural bio-template, where MgMn-...

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Autores principales: Lai, Yi-Ting, Huang, Yu-Sheng, Chen, Chin-Hsuan, Lin, Yan-Cheng, Jeng, Horng-Tay, Chang, Min-Chao, Chen, Lih-Juann, Lee, Chi-Young, Hsu, Po-Chun, Tai, Nyan-Hwa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7195549/
https://www.ncbi.nlm.nih.gov/pubmed/32361274
http://dx.doi.org/10.1016/j.isci.2020.101065
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author Lai, Yi-Ting
Huang, Yu-Sheng
Chen, Chin-Hsuan
Lin, Yan-Cheng
Jeng, Horng-Tay
Chang, Min-Chao
Chen, Lih-Juann
Lee, Chi-Young
Hsu, Po-Chun
Tai, Nyan-Hwa
author_facet Lai, Yi-Ting
Huang, Yu-Sheng
Chen, Chin-Hsuan
Lin, Yan-Cheng
Jeng, Horng-Tay
Chang, Min-Chao
Chen, Lih-Juann
Lee, Chi-Young
Hsu, Po-Chun
Tai, Nyan-Hwa
author_sort Lai, Yi-Ting
collection PubMed
description Excessive phosphorus in water is the primary culprit for eutrophication, which causes approximately $2.2 billion annual economic loss in the United States. This study demonstrates a phosphate-selective sustainable method by adopting Garcinia subelliptica leaves as a natural bio-template, where MgMn-layered double hydroxide (MgMn-LDH) and graphene oxide (GO) can be grown in situ to obtain L-GO/MgMn-LDH. After calcination, the composite shows a hierarchical porous structure and selective recognition of phosphate, which achieves significantly high and recyclable selective phosphate adsorption capacity and desorption rate of 244.08 mg-P g(−1) and 85.8%, respectively. The detail variation of LDHs during calcination has been observed via in situ transmission electron microscope (TEM). Moreover, the roles in facilitating phosphate adsorption and antimicrobial ability of chemical constituents in Garcinia subelliptica leaves, biflavonoids, and triterpenoids have been investigated. These results indicate the proposed bio-templated adsorbent is practical and eco-friendly for phosphorus sustainability in commercial wastewater treatment.
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spelling pubmed-71955492020-05-05 Green Treatment of Phosphate from Wastewater Using a Porous Bio-Templated Graphene Oxide/MgMn-Layered Double Hydroxide Composite Lai, Yi-Ting Huang, Yu-Sheng Chen, Chin-Hsuan Lin, Yan-Cheng Jeng, Horng-Tay Chang, Min-Chao Chen, Lih-Juann Lee, Chi-Young Hsu, Po-Chun Tai, Nyan-Hwa iScience Article Excessive phosphorus in water is the primary culprit for eutrophication, which causes approximately $2.2 billion annual economic loss in the United States. This study demonstrates a phosphate-selective sustainable method by adopting Garcinia subelliptica leaves as a natural bio-template, where MgMn-layered double hydroxide (MgMn-LDH) and graphene oxide (GO) can be grown in situ to obtain L-GO/MgMn-LDH. After calcination, the composite shows a hierarchical porous structure and selective recognition of phosphate, which achieves significantly high and recyclable selective phosphate adsorption capacity and desorption rate of 244.08 mg-P g(−1) and 85.8%, respectively. The detail variation of LDHs during calcination has been observed via in situ transmission electron microscope (TEM). Moreover, the roles in facilitating phosphate adsorption and antimicrobial ability of chemical constituents in Garcinia subelliptica leaves, biflavonoids, and triterpenoids have been investigated. These results indicate the proposed bio-templated adsorbent is practical and eco-friendly for phosphorus sustainability in commercial wastewater treatment. Elsevier 2020-04-18 /pmc/articles/PMC7195549/ /pubmed/32361274 http://dx.doi.org/10.1016/j.isci.2020.101065 Text en © 2020 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Lai, Yi-Ting
Huang, Yu-Sheng
Chen, Chin-Hsuan
Lin, Yan-Cheng
Jeng, Horng-Tay
Chang, Min-Chao
Chen, Lih-Juann
Lee, Chi-Young
Hsu, Po-Chun
Tai, Nyan-Hwa
Green Treatment of Phosphate from Wastewater Using a Porous Bio-Templated Graphene Oxide/MgMn-Layered Double Hydroxide Composite
title Green Treatment of Phosphate from Wastewater Using a Porous Bio-Templated Graphene Oxide/MgMn-Layered Double Hydroxide Composite
title_full Green Treatment of Phosphate from Wastewater Using a Porous Bio-Templated Graphene Oxide/MgMn-Layered Double Hydroxide Composite
title_fullStr Green Treatment of Phosphate from Wastewater Using a Porous Bio-Templated Graphene Oxide/MgMn-Layered Double Hydroxide Composite
title_full_unstemmed Green Treatment of Phosphate from Wastewater Using a Porous Bio-Templated Graphene Oxide/MgMn-Layered Double Hydroxide Composite
title_short Green Treatment of Phosphate from Wastewater Using a Porous Bio-Templated Graphene Oxide/MgMn-Layered Double Hydroxide Composite
title_sort green treatment of phosphate from wastewater using a porous bio-templated graphene oxide/mgmn-layered double hydroxide composite
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7195549/
https://www.ncbi.nlm.nih.gov/pubmed/32361274
http://dx.doi.org/10.1016/j.isci.2020.101065
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