Biowaste-derived substances as a tool for obtaining magnet-sensitive materials for environmental applications in wastewater treatments
In this study, bio-based substances (BBS) obtained from composted urban biowaste are used as stabilizers for the synthesis of magnet-sensitive nanoparticles (NPs). The BBS-stabilized NPs are characterized by means of different techniques (FTIR, XRD, SEM, BET analysis, magnetization curves). Addition...
Autores principales: | , , , , , , , , , |
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Formato: | Articulo Preprint |
Lenguaje: | Inglés |
Publicado: |
2017
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Materias: | |
Acceso en línea: | http://sedici.unlp.edu.ar/handle/10915/107171 https://www.sciencedirect.com/science/article/abs/pii/S1385894716315297 |
Aporte de: |
id |
I19-R120-10915-107171 |
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record_format |
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institution |
Universidad Nacional de La Plata |
institution_str |
I-19 |
repository_str |
R-120 |
collection |
SEDICI (UNLP) |
language |
Inglés |
topic |
Ciencias Exactas Física biomasses valorization emerging pollutants iron oxides magnetic materials Fenton and Photo-Fenton reactions |
spellingShingle |
Ciencias Exactas Física biomasses valorization emerging pollutants iron oxides magnetic materials Fenton and Photo-Fenton reactions Franzoso, Flavia Nisticò, Roberto Cesano, Federico Corazzari, Ingrid Turci, Francesco Scarano, Domenica Bianco Prevot, Alessandra Magnacca, Giuliana Carlos, Luciano Mártire, Daniel Osvaldo Biowaste-derived substances as a tool for obtaining magnet-sensitive materials for environmental applications in wastewater treatments |
topic_facet |
Ciencias Exactas Física biomasses valorization emerging pollutants iron oxides magnetic materials Fenton and Photo-Fenton reactions |
description |
In this study, bio-based substances (BBS) obtained from composted urban biowaste are used as stabilizers for the synthesis of magnet-sensitive nanoparticles (NPs). The BBS-stabilized NPs are characterized by means of different techniques (FTIR, XRD, SEM, BET analysis, magnetization curves). Additionally, TGA coupled on-line with FTIR and GC/MS analysis of the exhausted gas are performed in order to simultaneously identify all the degradation products and evaluate the exact composition of such BBS-stabilized materials. Moreover, Fenton-like or photo-Fenton-like experiments carried out at circumneutral pH are performed in order to evaluate the BBS-functionalized NPs photo-activity towards the degradation of caffeine (taken as model emerging pollutant). The obtained promising results encourage the use of BBS as a green alternative tool for the preparation of smart materials with enhanced magnet-sensitive properties, also suitable for applications in wastewater purification treatments. |
format |
Articulo Preprint |
author |
Franzoso, Flavia Nisticò, Roberto Cesano, Federico Corazzari, Ingrid Turci, Francesco Scarano, Domenica Bianco Prevot, Alessandra Magnacca, Giuliana Carlos, Luciano Mártire, Daniel Osvaldo |
author_facet |
Franzoso, Flavia Nisticò, Roberto Cesano, Federico Corazzari, Ingrid Turci, Francesco Scarano, Domenica Bianco Prevot, Alessandra Magnacca, Giuliana Carlos, Luciano Mártire, Daniel Osvaldo |
author_sort |
Franzoso, Flavia |
title |
Biowaste-derived substances as a tool for obtaining magnet-sensitive materials for environmental applications in wastewater treatments |
title_short |
Biowaste-derived substances as a tool for obtaining magnet-sensitive materials for environmental applications in wastewater treatments |
title_full |
Biowaste-derived substances as a tool for obtaining magnet-sensitive materials for environmental applications in wastewater treatments |
title_fullStr |
Biowaste-derived substances as a tool for obtaining magnet-sensitive materials for environmental applications in wastewater treatments |
title_full_unstemmed |
Biowaste-derived substances as a tool for obtaining magnet-sensitive materials for environmental applications in wastewater treatments |
title_sort |
biowaste-derived substances as a tool for obtaining magnet-sensitive materials for environmental applications in wastewater treatments |
publishDate |
2017 |
url |
http://sedici.unlp.edu.ar/handle/10915/107171 https://www.sciencedirect.com/science/article/abs/pii/S1385894716315297 |
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Repositorios |
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