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Ionic Cross-Linking Fabrication of Chitosan-Based Beads Modified with FeO and TiO(2) Nanoparticles: Adsorption Mechanism toward Naphthalene Removal in Seawater from Cartagena Bay Area
[Image: see text] Polycyclic aromatic hydrocarbons (PAHs) are complex molecules produced by the thermal decomposition of organic matter in anthropogenic activities. Novel composites with enhanced physicochemical properties aim to overcome limitations such as adsorption capacity, affinity, and stabil...
Autores principales: | , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Chemical Society
2020
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Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7581239/ https://www.ncbi.nlm.nih.gov/pubmed/33110974 http://dx.doi.org/10.1021/acsomega.0c02984 |
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author | Patiño-Ruiz, David Alfonso De Ávila, Gesira Alarcón-Suesca, Carlos González-Delgado, Ángel Dario Herrera, Adriana |
author_facet | Patiño-Ruiz, David Alfonso De Ávila, Gesira Alarcón-Suesca, Carlos González-Delgado, Ángel Dario Herrera, Adriana |
author_sort | Patiño-Ruiz, David Alfonso |
collection | PubMed |
description | [Image: see text] Polycyclic aromatic hydrocarbons (PAHs) are complex molecules produced by the thermal decomposition of organic matter in anthropogenic activities. Novel composites with enhanced physicochemical properties aim to overcome limitations such as adsorption capacity, affinity, and stability for PAHs adsorption. Composites based on chitosan are promising due to the good biocompatibility and adsorption properties. This study focuses on the facile preparation of chitosan beads modified with iron oxide (FeO) and titanium dioxide (TiO(2)) nanoparticles via ionic cross-linking (Ch-FeO/TiO(2)). FeO and TiO(2) were synthesized performing co-precipitation and green chemistry methods, respectively. The characterization evidenced the formation of Ch-FeO/TiO(2) with good crystallinity, excellent thermal stability, and superparamagnetic response, attributed to the presence of FeO and TiO(2) nanoparticles. High thermal stability up to 270 °C was related to the cross-linked chitosan network. The enhanced adsorption mechanism of Ch-FeO/TiO(2) was determined by removing naphthalene from water and seawater samples. The Ch-FeO/TiO(2) showed a higher adsorption capacity of 33.1 mg/g compared to 29.8 mg/g of the unmodified chitosan (un-Ch) beads. This is due to the higher functional surface area of 27.13 m(2)/g, compared to that of 0.708 m(2)/g for un-Ch. We found a rapid adsorption rate of 240 min and the maximum adsorption capacity of 149.3 mg/g for Ch-FeO/TiO(2). A large number of actives sites allows for increasing the naphthalene molecules interaction. Adsorption in seawater samples from Cartagena Bay (Colombia) exhibits an outstanding efficiency of up to 90%. These results suggest a promising, cheap, and environmentally friendly composite for remediation of water sources contaminated with complex compounds. |
format | Online Article Text |
id | pubmed-7581239 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | American Chemical Society |
record_format | MEDLINE/PubMed |
spelling | pubmed-75812392020-10-26 Ionic Cross-Linking Fabrication of Chitosan-Based Beads Modified with FeO and TiO(2) Nanoparticles: Adsorption Mechanism toward Naphthalene Removal in Seawater from Cartagena Bay Area Patiño-Ruiz, David Alfonso De Ávila, Gesira Alarcón-Suesca, Carlos González-Delgado, Ángel Dario Herrera, Adriana ACS Omega [Image: see text] Polycyclic aromatic hydrocarbons (PAHs) are complex molecules produced by the thermal decomposition of organic matter in anthropogenic activities. Novel composites with enhanced physicochemical properties aim to overcome limitations such as adsorption capacity, affinity, and stability for PAHs adsorption. Composites based on chitosan are promising due to the good biocompatibility and adsorption properties. This study focuses on the facile preparation of chitosan beads modified with iron oxide (FeO) and titanium dioxide (TiO(2)) nanoparticles via ionic cross-linking (Ch-FeO/TiO(2)). FeO and TiO(2) were synthesized performing co-precipitation and green chemistry methods, respectively. The characterization evidenced the formation of Ch-FeO/TiO(2) with good crystallinity, excellent thermal stability, and superparamagnetic response, attributed to the presence of FeO and TiO(2) nanoparticles. High thermal stability up to 270 °C was related to the cross-linked chitosan network. The enhanced adsorption mechanism of Ch-FeO/TiO(2) was determined by removing naphthalene from water and seawater samples. The Ch-FeO/TiO(2) showed a higher adsorption capacity of 33.1 mg/g compared to 29.8 mg/g of the unmodified chitosan (un-Ch) beads. This is due to the higher functional surface area of 27.13 m(2)/g, compared to that of 0.708 m(2)/g for un-Ch. We found a rapid adsorption rate of 240 min and the maximum adsorption capacity of 149.3 mg/g for Ch-FeO/TiO(2). A large number of actives sites allows for increasing the naphthalene molecules interaction. Adsorption in seawater samples from Cartagena Bay (Colombia) exhibits an outstanding efficiency of up to 90%. These results suggest a promising, cheap, and environmentally friendly composite for remediation of water sources contaminated with complex compounds. American Chemical Society 2020-10-09 /pmc/articles/PMC7581239/ /pubmed/33110974 http://dx.doi.org/10.1021/acsomega.0c02984 Text en © 2020 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes. |
spellingShingle | Patiño-Ruiz, David Alfonso De Ávila, Gesira Alarcón-Suesca, Carlos González-Delgado, Ángel Dario Herrera, Adriana Ionic Cross-Linking Fabrication of Chitosan-Based Beads Modified with FeO and TiO(2) Nanoparticles: Adsorption Mechanism toward Naphthalene Removal in Seawater from Cartagena Bay Area |
title | Ionic Cross-Linking Fabrication of Chitosan-Based
Beads Modified with FeO and TiO(2) Nanoparticles: Adsorption
Mechanism toward Naphthalene Removal in Seawater from Cartagena Bay Area |
title_full | Ionic Cross-Linking Fabrication of Chitosan-Based
Beads Modified with FeO and TiO(2) Nanoparticles: Adsorption
Mechanism toward Naphthalene Removal in Seawater from Cartagena Bay Area |
title_fullStr | Ionic Cross-Linking Fabrication of Chitosan-Based
Beads Modified with FeO and TiO(2) Nanoparticles: Adsorption
Mechanism toward Naphthalene Removal in Seawater from Cartagena Bay Area |
title_full_unstemmed | Ionic Cross-Linking Fabrication of Chitosan-Based
Beads Modified with FeO and TiO(2) Nanoparticles: Adsorption
Mechanism toward Naphthalene Removal in Seawater from Cartagena Bay Area |
title_short | Ionic Cross-Linking Fabrication of Chitosan-Based
Beads Modified with FeO and TiO(2) Nanoparticles: Adsorption
Mechanism toward Naphthalene Removal in Seawater from Cartagena Bay Area |
title_sort | ionic cross-linking fabrication of chitosan-based
beads modified with feo and tio(2) nanoparticles: adsorption
mechanism toward naphthalene removal in seawater from cartagena bay area |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7581239/ https://www.ncbi.nlm.nih.gov/pubmed/33110974 http://dx.doi.org/10.1021/acsomega.0c02984 |
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