Green approach for the synthesis of nanocomposite used as reactive material to containment amoxicillin and lead in groundwater

In this study, the environmental concepts were applied to preserve the environment by utilizing natural materials instead of harmful chemicals to synthesize a nanocomposite comprising quartz sand reinforced with Fe/Zn nanoparticles, wherein eucalyptus leaf extract was utilized as a green antioxidant...

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Main Authors: Haneen Salih Hadi, Ziad Tark Abd Ali
Format: Article
Language:English
Published: Elsevier 2024-06-01
Series:Case Studies in Chemical and Environmental Engineering
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2666016424001014
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author Haneen Salih Hadi
Ziad Tark Abd Ali
author_facet Haneen Salih Hadi
Ziad Tark Abd Ali
author_sort Haneen Salih Hadi
collection DOAJ
description In this study, the environmental concepts were applied to preserve the environment by utilizing natural materials instead of harmful chemicals to synthesize a nanocomposite comprising quartz sand reinforced with Fe/Zn nanoparticles, wherein eucalyptus leaf extract was utilized as a green antioxidant, thereby eliminating the use of harmful chemicals. The nanocomposite was implemented as an active agent inside a permeable reactive barrier methodology to address the issue of stained groundwater with amoxicillin and lead. Based on the findings of this study, the nanocomposite can be considered a promising reactive agent in the PRB technology for the cleanup of contaminated groundwater.
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spelling doaj.art-b590336b8cfd4ffe9c8b260caca341db2024-06-01T04:23:10ZengElsevierCase Studies in Chemical and Environmental Engineering2666-01642024-06-019100707Green approach for the synthesis of nanocomposite used as reactive material to containment amoxicillin and lead in groundwaterHaneen Salih Hadi0Ziad Tark Abd Ali1Dept. of Environmental Engineering, College of Engineering, University of Baghdad, IraqCorresponding author.; Dept. of Environmental Engineering, College of Engineering, University of Baghdad, IraqIn this study, the environmental concepts were applied to preserve the environment by utilizing natural materials instead of harmful chemicals to synthesize a nanocomposite comprising quartz sand reinforced with Fe/Zn nanoparticles, wherein eucalyptus leaf extract was utilized as a green antioxidant, thereby eliminating the use of harmful chemicals. The nanocomposite was implemented as an active agent inside a permeable reactive barrier methodology to address the issue of stained groundwater with amoxicillin and lead. Based on the findings of this study, the nanocomposite can be considered a promising reactive agent in the PRB technology for the cleanup of contaminated groundwater.http://www.sciencedirect.com/science/article/pii/S2666016424001014AmoxicillinCharacterizationLeadNanocompositePermeable reactive barrier
spellingShingle Haneen Salih Hadi
Ziad Tark Abd Ali
Green approach for the synthesis of nanocomposite used as reactive material to containment amoxicillin and lead in groundwater
Case Studies in Chemical and Environmental Engineering
Amoxicillin
Characterization
Lead
Nanocomposite
Permeable reactive barrier
title Green approach for the synthesis of nanocomposite used as reactive material to containment amoxicillin and lead in groundwater
title_full Green approach for the synthesis of nanocomposite used as reactive material to containment amoxicillin and lead in groundwater
title_fullStr Green approach for the synthesis of nanocomposite used as reactive material to containment amoxicillin and lead in groundwater
title_full_unstemmed Green approach for the synthesis of nanocomposite used as reactive material to containment amoxicillin and lead in groundwater
title_short Green approach for the synthesis of nanocomposite used as reactive material to containment amoxicillin and lead in groundwater
title_sort green approach for the synthesis of nanocomposite used as reactive material to containment amoxicillin and lead in groundwater
topic Amoxicillin
Characterization
Lead
Nanocomposite
Permeable reactive barrier
url http://www.sciencedirect.com/science/article/pii/S2666016424001014
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