Simultaneous adsorption of selected endocrine-disrupting compounds at trace level of concentration by using novel calcium-based metal-organic framework

The existence of newly identified water contaminants, such as endocrine-disrupting substances (EDCs), in polluted water sources represents substantial environmental and health concerns. Over novel mixed-linker porous calcium-based metal-organic frameworks (Ca-MIX), the simultaneous adsorptive remova...

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Main Authors: Sukatis, Fahren Fazzer, Razak, Muhammad Raznisyafiq, Looi, Ley Juen, Lim, Hong Ngee, Abdul Rahman, Mohd Basyaruddin, Aris, Ahmad Zaharin
Format: Article
Language:English
Published: Elsevier 2024
Online Access:http://psasir.upm.edu.my/id/eprint/113758/1/113758.pdf
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author Sukatis, Fahren Fazzer
Razak, Muhammad Raznisyafiq
Looi, Ley Juen
Lim, Hong Ngee
Abdul Rahman, Mohd Basyaruddin
Aris, Ahmad Zaharin
author_facet Sukatis, Fahren Fazzer
Razak, Muhammad Raznisyafiq
Looi, Ley Juen
Lim, Hong Ngee
Abdul Rahman, Mohd Basyaruddin
Aris, Ahmad Zaharin
author_sort Sukatis, Fahren Fazzer
collection UPM
description The existence of newly identified water contaminants, such as endocrine-disrupting substances (EDCs), in polluted water sources represents substantial environmental and health concerns. Over novel mixed-linker porous calcium-based metal-organic frameworks (Ca-MIX), the simultaneous adsorptive removal of 17-ethynylestradiol (EE2), perfluorooctanoic acid (PFOA), and bisphenol A (BPA) from aqueous solutions has been studied in terms of adsorption kinetics, adsorption isotherms, and water chemistry effects. The adsorption isotherm and kinetics fit the Langmuir model well and followed pseudo-second-order kinetics. Generally, all three compounds adsorb over Ca-MIX depending on the chemical properties of both the adsorbate–adsorbent and water matrix chemistry. Electrostatic and hydrophobic interactions may explain the adsorption mechanism between EDCs and Ca-MIX. The order from the best to worst removal efficiency was EE2 > PFOA > BPA when Ca-MIX was used as the adsorbent. In conclusion, it can be suggested that this material could be used as an adsorbent capable of removing harmful emerging contaminants in water at trace exposure levels. © 2024
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spelling upm.eprints-1137582025-01-13T07:47:41Z http://psasir.upm.edu.my/id/eprint/113758/ Simultaneous adsorption of selected endocrine-disrupting compounds at trace level of concentration by using novel calcium-based metal-organic framework Sukatis, Fahren Fazzer Razak, Muhammad Raznisyafiq Looi, Ley Juen Lim, Hong Ngee Abdul Rahman, Mohd Basyaruddin Aris, Ahmad Zaharin The existence of newly identified water contaminants, such as endocrine-disrupting substances (EDCs), in polluted water sources represents substantial environmental and health concerns. Over novel mixed-linker porous calcium-based metal-organic frameworks (Ca-MIX), the simultaneous adsorptive removal of 17-ethynylestradiol (EE2), perfluorooctanoic acid (PFOA), and bisphenol A (BPA) from aqueous solutions has been studied in terms of adsorption kinetics, adsorption isotherms, and water chemistry effects. The adsorption isotherm and kinetics fit the Langmuir model well and followed pseudo-second-order kinetics. Generally, all three compounds adsorb over Ca-MIX depending on the chemical properties of both the adsorbate–adsorbent and water matrix chemistry. Electrostatic and hydrophobic interactions may explain the adsorption mechanism between EDCs and Ca-MIX. The order from the best to worst removal efficiency was EE2 > PFOA > BPA when Ca-MIX was used as the adsorbent. In conclusion, it can be suggested that this material could be used as an adsorbent capable of removing harmful emerging contaminants in water at trace exposure levels. © 2024 Elsevier 2024 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/113758/1/113758.pdf Sukatis, Fahren Fazzer and Razak, Muhammad Raznisyafiq and Looi, Ley Juen and Lim, Hong Ngee and Abdul Rahman, Mohd Basyaruddin and Aris, Ahmad Zaharin (2024) Simultaneous adsorption of selected endocrine-disrupting compounds at trace level of concentration by using novel calcium-based metal-organic framework. Microporous and Mesoporous Materials, 380. art. no. 113316. pp. 1-12. ISSN 1387-1811; eISSN: 1387-1811 https://linkinghub.elsevier.com/retrieve/pii/S138718112400338X 10.1016/j.micromeso.2024.113316
spellingShingle Sukatis, Fahren Fazzer
Razak, Muhammad Raznisyafiq
Looi, Ley Juen
Lim, Hong Ngee
Abdul Rahman, Mohd Basyaruddin
Aris, Ahmad Zaharin
Simultaneous adsorption of selected endocrine-disrupting compounds at trace level of concentration by using novel calcium-based metal-organic framework
title Simultaneous adsorption of selected endocrine-disrupting compounds at trace level of concentration by using novel calcium-based metal-organic framework
title_full Simultaneous adsorption of selected endocrine-disrupting compounds at trace level of concentration by using novel calcium-based metal-organic framework
title_fullStr Simultaneous adsorption of selected endocrine-disrupting compounds at trace level of concentration by using novel calcium-based metal-organic framework
title_full_unstemmed Simultaneous adsorption of selected endocrine-disrupting compounds at trace level of concentration by using novel calcium-based metal-organic framework
title_short Simultaneous adsorption of selected endocrine-disrupting compounds at trace level of concentration by using novel calcium-based metal-organic framework
title_sort simultaneous adsorption of selected endocrine disrupting compounds at trace level of concentration by using novel calcium based metal organic framework
url http://psasir.upm.edu.my/id/eprint/113758/1/113758.pdf
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