Cargando…

Kinetics, thermodynamics, equilibrium, surface modelling, and atomic absorption analysis of selective Cu(ii) removal from aqueous solutions and rivers water using silica-2-(pyridin-2-ylmethoxy)ethan-1-ol hybrid material

The removal of heavy metals is attracting considerable attention due to their undesirable effects on the environment. In this investigation, a new adsorbent based on silica functionalized with pyridin-2-ylmethanol (SiPy) was successfully synthesized to yield to a hybrid material. FTIR, SEM, TGA, and...

Descripción completa

Detalles Bibliográficos
Autores principales: Tighadouini, Said, Radi, Smaail, Roby, Othmane, Hammoudan, Imad, Saddik, Rafik, Garcia, Yann, Almarhoon, Zainab M., Mabkhot, Yahia N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8978821/
https://www.ncbi.nlm.nih.gov/pubmed/35424512
http://dx.doi.org/10.1039/d1ra06640d
_version_ 1784681038213021696
author Tighadouini, Said
Radi, Smaail
Roby, Othmane
Hammoudan, Imad
Saddik, Rafik
Garcia, Yann
Almarhoon, Zainab M.
Mabkhot, Yahia N.
author_facet Tighadouini, Said
Radi, Smaail
Roby, Othmane
Hammoudan, Imad
Saddik, Rafik
Garcia, Yann
Almarhoon, Zainab M.
Mabkhot, Yahia N.
author_sort Tighadouini, Said
collection PubMed
description The removal of heavy metals is attracting considerable attention due to their undesirable effects on the environment. In this investigation, a new adsorbent based on silica functionalized with pyridin-2-ylmethanol (SiPy) was successfully synthesized to yield to a hybrid material. FTIR, SEM, TGA, and specific surface area analysis were used to characterize the structure and morphology of the SiPy hybrid material. Various heavy metal ions such as Cu(ii), Zn(ii), Cd(ii), and Pb(ii) were selected to examine the adsorption efficiency of the newly prepared adsorbent, optimized at varying solution pH, contact time, concentration, and temperature. The adsorbent SiPy displayed good adsorption capacity of 90.25, 75.38, 55.23, and 35.12 mg g(−1) for Cu(ii), Zn(ii), Cd(ii), and Pb(ii), respectively, at 25 min and pH = 6. The adsorption behaviors of metal ions onto the SiPy adsorbent fitted well with the pseudo-second-order kinetic mode and the isotherm was better described by the Langmuir isotherm. The thermodynamic studies disclose spontaneous and endothermic adsorption process. Furthermore, the SiPy adsorbent retained good selectivity and regeneration properties after five adsorption–desorption cycles of Cu(ii). A computational investigation of the adsorption mechanism indicates that the N-pyridine, O-hydroxyl, and ether O-atoms play a predominant role during the capture of Cu(ii), Zn(ii), Cd(ii), and Pb(ii). This study proposes the SiPy adsorbent as an attractive material for the selective removal of Cu(ii) from real river water and real industrial wastewater.
format Online
Article
Text
id pubmed-8978821
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-89788212022-04-13 Kinetics, thermodynamics, equilibrium, surface modelling, and atomic absorption analysis of selective Cu(ii) removal from aqueous solutions and rivers water using silica-2-(pyridin-2-ylmethoxy)ethan-1-ol hybrid material Tighadouini, Said Radi, Smaail Roby, Othmane Hammoudan, Imad Saddik, Rafik Garcia, Yann Almarhoon, Zainab M. Mabkhot, Yahia N. RSC Adv Chemistry The removal of heavy metals is attracting considerable attention due to their undesirable effects on the environment. In this investigation, a new adsorbent based on silica functionalized with pyridin-2-ylmethanol (SiPy) was successfully synthesized to yield to a hybrid material. FTIR, SEM, TGA, and specific surface area analysis were used to characterize the structure and morphology of the SiPy hybrid material. Various heavy metal ions such as Cu(ii), Zn(ii), Cd(ii), and Pb(ii) were selected to examine the adsorption efficiency of the newly prepared adsorbent, optimized at varying solution pH, contact time, concentration, and temperature. The adsorbent SiPy displayed good adsorption capacity of 90.25, 75.38, 55.23, and 35.12 mg g(−1) for Cu(ii), Zn(ii), Cd(ii), and Pb(ii), respectively, at 25 min and pH = 6. The adsorption behaviors of metal ions onto the SiPy adsorbent fitted well with the pseudo-second-order kinetic mode and the isotherm was better described by the Langmuir isotherm. The thermodynamic studies disclose spontaneous and endothermic adsorption process. Furthermore, the SiPy adsorbent retained good selectivity and regeneration properties after five adsorption–desorption cycles of Cu(ii). A computational investigation of the adsorption mechanism indicates that the N-pyridine, O-hydroxyl, and ether O-atoms play a predominant role during the capture of Cu(ii), Zn(ii), Cd(ii), and Pb(ii). This study proposes the SiPy adsorbent as an attractive material for the selective removal of Cu(ii) from real river water and real industrial wastewater. The Royal Society of Chemistry 2021-12-22 /pmc/articles/PMC8978821/ /pubmed/35424512 http://dx.doi.org/10.1039/d1ra06640d Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Tighadouini, Said
Radi, Smaail
Roby, Othmane
Hammoudan, Imad
Saddik, Rafik
Garcia, Yann
Almarhoon, Zainab M.
Mabkhot, Yahia N.
Kinetics, thermodynamics, equilibrium, surface modelling, and atomic absorption analysis of selective Cu(ii) removal from aqueous solutions and rivers water using silica-2-(pyridin-2-ylmethoxy)ethan-1-ol hybrid material
title Kinetics, thermodynamics, equilibrium, surface modelling, and atomic absorption analysis of selective Cu(ii) removal from aqueous solutions and rivers water using silica-2-(pyridin-2-ylmethoxy)ethan-1-ol hybrid material
title_full Kinetics, thermodynamics, equilibrium, surface modelling, and atomic absorption analysis of selective Cu(ii) removal from aqueous solutions and rivers water using silica-2-(pyridin-2-ylmethoxy)ethan-1-ol hybrid material
title_fullStr Kinetics, thermodynamics, equilibrium, surface modelling, and atomic absorption analysis of selective Cu(ii) removal from aqueous solutions and rivers water using silica-2-(pyridin-2-ylmethoxy)ethan-1-ol hybrid material
title_full_unstemmed Kinetics, thermodynamics, equilibrium, surface modelling, and atomic absorption analysis of selective Cu(ii) removal from aqueous solutions and rivers water using silica-2-(pyridin-2-ylmethoxy)ethan-1-ol hybrid material
title_short Kinetics, thermodynamics, equilibrium, surface modelling, and atomic absorption analysis of selective Cu(ii) removal from aqueous solutions and rivers water using silica-2-(pyridin-2-ylmethoxy)ethan-1-ol hybrid material
title_sort kinetics, thermodynamics, equilibrium, surface modelling, and atomic absorption analysis of selective cu(ii) removal from aqueous solutions and rivers water using silica-2-(pyridin-2-ylmethoxy)ethan-1-ol hybrid material
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8978821/
https://www.ncbi.nlm.nih.gov/pubmed/35424512
http://dx.doi.org/10.1039/d1ra06640d
work_keys_str_mv AT tighadouinisaid kineticsthermodynamicsequilibriumsurfacemodellingandatomicabsorptionanalysisofselectivecuiiremovalfromaqueoussolutionsandriverswaterusingsilica2pyridin2ylmethoxyethan1olhybridmaterial
AT radismaail kineticsthermodynamicsequilibriumsurfacemodellingandatomicabsorptionanalysisofselectivecuiiremovalfromaqueoussolutionsandriverswaterusingsilica2pyridin2ylmethoxyethan1olhybridmaterial
AT robyothmane kineticsthermodynamicsequilibriumsurfacemodellingandatomicabsorptionanalysisofselectivecuiiremovalfromaqueoussolutionsandriverswaterusingsilica2pyridin2ylmethoxyethan1olhybridmaterial
AT hammoudanimad kineticsthermodynamicsequilibriumsurfacemodellingandatomicabsorptionanalysisofselectivecuiiremovalfromaqueoussolutionsandriverswaterusingsilica2pyridin2ylmethoxyethan1olhybridmaterial
AT saddikrafik kineticsthermodynamicsequilibriumsurfacemodellingandatomicabsorptionanalysisofselectivecuiiremovalfromaqueoussolutionsandriverswaterusingsilica2pyridin2ylmethoxyethan1olhybridmaterial
AT garciayann kineticsthermodynamicsequilibriumsurfacemodellingandatomicabsorptionanalysisofselectivecuiiremovalfromaqueoussolutionsandriverswaterusingsilica2pyridin2ylmethoxyethan1olhybridmaterial
AT almarhoonzainabm kineticsthermodynamicsequilibriumsurfacemodellingandatomicabsorptionanalysisofselectivecuiiremovalfromaqueoussolutionsandriverswaterusingsilica2pyridin2ylmethoxyethan1olhybridmaterial
AT mabkhotyahian kineticsthermodynamicsequilibriumsurfacemodellingandatomicabsorptionanalysisofselectivecuiiremovalfromaqueoussolutionsandriverswaterusingsilica2pyridin2ylmethoxyethan1olhybridmaterial