Silver Nanoparticles for Water Pollution Monitoring and Treatments: Ecosafety Challenge and Cellulose-Based Hybrids Solution

Silver nanoparticles (AgNPs) are widely used as engineered nanomaterials (ENMs) in many advanced nanotechnologies, due to their versatile, easy and cheap preparations combined with peculiar chemical-physical properties. Their increased production and integration in environmental applications includi...

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Main Authors: Andrea Fiorati, Arianna Bellingeri, Carlo Punta, Ilaria Corsi, Iole Venditti
Format: Article
Language:English
Published: MDPI AG 2020-07-01
Series:Polymers
Subjects:
Online Access:https://www.mdpi.com/2073-4360/12/8/1635
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spelling doaj-4f098789ebcf42b5b7d4b4695276a7fa2020-11-25T03:27:58ZengMDPI AGPolymers2073-43602020-07-01121635163510.3390/polym12081635Silver Nanoparticles for Water Pollution Monitoring and Treatments: Ecosafety Challenge and Cellulose-Based Hybrids SolutionAndrea Fiorati0Arianna Bellingeri1Carlo Punta2Ilaria Corsi3Iole Venditti4Department of Chemistry, Materials, and Chemical Engineering “G. Natta” and INSTM Local Unit, Politecnico di Milano, Piazza Leonardo da Vinci 32, I-20133 Milano, ItalyDepartment of Physical, Earth and Environmental Sciences and INSTM Local Unit, University of Siena, 53100 Siena, ItalyDepartment of Chemistry, Materials, and Chemical Engineering “G. Natta” and INSTM Local Unit, Politecnico di Milano, Piazza Leonardo da Vinci 32, I-20133 Milano, ItalyDepartment of Physical, Earth and Environmental Sciences and INSTM Local Unit, University of Siena, 53100 Siena, ItalyDepartment of Sciences, Roma Tre University of Rome, via della Vasca Navale 79, 00146 Rome, ItalySilver nanoparticles (AgNPs) are widely used as engineered nanomaterials (ENMs) in many advanced nanotechnologies, due to their versatile, easy and cheap preparations combined with peculiar chemical-physical properties. Their increased production and integration in environmental applications including water treatment raise concerns for their impact on humans and the environment. An eco-design strategy that makes it possible to combine the best material performances with no risk for the natural ecosystems and living beings has been recently proposed. This review envisages potential hybrid solutions of AgNPs for water pollution monitoring and remediation to satisfy their successful, environmentally safe (ecosafe) application. Being extremely efficient in pollutants sensing and degradation, their ecosafe application can be achieved in combination with polymeric-based materials, especially with cellulose, by following an eco-design approach. In fact, (AgNPs)–cellulose hybrids have the double advantage of being easily produced using recycled material, with low costs and possible reuse, and of being ecosafe, if properly designed. An updated view of the use and prospects of these advanced hybrids AgNP-based materials is provided, which will surely speed their environmental application with consequent significant economic and environmental impact.https://www.mdpi.com/2073-4360/12/8/1635silver nanoparticlesnanocelluloseengineered nanomaterialswater monitoringwater treatmentecosafety
collection DOAJ
language English
format Article
sources DOAJ
author Andrea Fiorati
Arianna Bellingeri
Carlo Punta
Ilaria Corsi
Iole Venditti
spellingShingle Andrea Fiorati
Arianna Bellingeri
Carlo Punta
Ilaria Corsi
Iole Venditti
Silver Nanoparticles for Water Pollution Monitoring and Treatments: Ecosafety Challenge and Cellulose-Based Hybrids Solution
Polymers
silver nanoparticles
nanocellulose
engineered nanomaterials
water monitoring
water treatment
ecosafety
author_facet Andrea Fiorati
Arianna Bellingeri
Carlo Punta
Ilaria Corsi
Iole Venditti
author_sort Andrea Fiorati
title Silver Nanoparticles for Water Pollution Monitoring and Treatments: Ecosafety Challenge and Cellulose-Based Hybrids Solution
title_short Silver Nanoparticles for Water Pollution Monitoring and Treatments: Ecosafety Challenge and Cellulose-Based Hybrids Solution
title_full Silver Nanoparticles for Water Pollution Monitoring and Treatments: Ecosafety Challenge and Cellulose-Based Hybrids Solution
title_fullStr Silver Nanoparticles for Water Pollution Monitoring and Treatments: Ecosafety Challenge and Cellulose-Based Hybrids Solution
title_full_unstemmed Silver Nanoparticles for Water Pollution Monitoring and Treatments: Ecosafety Challenge and Cellulose-Based Hybrids Solution
title_sort silver nanoparticles for water pollution monitoring and treatments: ecosafety challenge and cellulose-based hybrids solution
publisher MDPI AG
series Polymers
issn 2073-4360
publishDate 2020-07-01
description Silver nanoparticles (AgNPs) are widely used as engineered nanomaterials (ENMs) in many advanced nanotechnologies, due to their versatile, easy and cheap preparations combined with peculiar chemical-physical properties. Their increased production and integration in environmental applications including water treatment raise concerns for their impact on humans and the environment. An eco-design strategy that makes it possible to combine the best material performances with no risk for the natural ecosystems and living beings has been recently proposed. This review envisages potential hybrid solutions of AgNPs for water pollution monitoring and remediation to satisfy their successful, environmentally safe (ecosafe) application. Being extremely efficient in pollutants sensing and degradation, their ecosafe application can be achieved in combination with polymeric-based materials, especially with cellulose, by following an eco-design approach. In fact, (AgNPs)–cellulose hybrids have the double advantage of being easily produced using recycled material, with low costs and possible reuse, and of being ecosafe, if properly designed. An updated view of the use and prospects of these advanced hybrids AgNP-based materials is provided, which will surely speed their environmental application with consequent significant economic and environmental impact.
topic silver nanoparticles
nanocellulose
engineered nanomaterials
water monitoring
water treatment
ecosafety
url https://www.mdpi.com/2073-4360/12/8/1635
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