APPLICATION OF NANOTECHNOLOGY IN WATER TREATMENT: A REVIEW

Nanotechnology enables the control of matter at nanoscale and the creation of materials that have properties with a specific function, which allows its application in many fields. The Fields that are most affected by nanotechnology in environmental applications including water treatment are divided...

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Main Authors: Tássia Rhuna Tonial dos Santos, Gustavo Affonso Pisano Mateus, Marcela Fernandes Silva, Rosângela Bergamasco
Format: Article
Language:Portuguese
Published: Editora UNINGÁ 2019-06-01
Series:UNINGÁ Review
Subjects:
Online Access:http://revista.uninga.br/index.php/uningareviews/article/view/2526/2149
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spelling doaj-384e06ffbff3433bb5bef0eabe6827292021-02-16T20:14:23ZporEditora UNINGÁUNINGÁ Review2178-25712019-06-013425172APPLICATION OF NANOTECHNOLOGY IN WATER TREATMENT: A REVIEWTássia Rhuna Tonial dos Santos0Gustavo Affonso Pisano Mateus1Marcela Fernandes Silva2Rosângela Bergamasco3Universidade Estadual de MaringáUniversidade Estadual de MaringáUniversidade Estadual de MaringáUniversidade Estadual de MaringáNanotechnology enables the control of matter at nanoscale and the creation of materials that have properties with a specific function, which allows its application in many fields. The Fields that are most affected by nanotechnology in environmental applications including water treatment are divided into: treatment and remediation, sensing and detection and pollution control. The use of nanostructured iron oxides like maghemite has been deeply studied due to the advantages that this material has in comparison to other materials. Its characteristics include its low cost, ease of separation through external magnetic fields, high surface area, high adsorption capacity and efficient action as a photocatalyst. This facilitates its use in processes such as coagulation flocculation. Considering this context, the present study, which is a bibliographic review, aims to contribute with the current bibliography about the use of nanoparticles of iron oxide in water treatment. Given the topic approached, it was possible to know the different methodologies proposed to obtain magnetic nanoparticles as well as their various applications focused on wastewater and water supply treatment.http://revista.uninga.br/index.php/uningareviews/article/view/2526/2149nanoparticlesnanotechnologywater treatment
collection DOAJ
language Portuguese
format Article
sources DOAJ
author Tássia Rhuna Tonial dos Santos
Gustavo Affonso Pisano Mateus
Marcela Fernandes Silva
Rosângela Bergamasco
spellingShingle Tássia Rhuna Tonial dos Santos
Gustavo Affonso Pisano Mateus
Marcela Fernandes Silva
Rosângela Bergamasco
APPLICATION OF NANOTECHNOLOGY IN WATER TREATMENT: A REVIEW
UNINGÁ Review
nanoparticles
nanotechnology
water treatment
author_facet Tássia Rhuna Tonial dos Santos
Gustavo Affonso Pisano Mateus
Marcela Fernandes Silva
Rosângela Bergamasco
author_sort Tássia Rhuna Tonial dos Santos
title APPLICATION OF NANOTECHNOLOGY IN WATER TREATMENT: A REVIEW
title_short APPLICATION OF NANOTECHNOLOGY IN WATER TREATMENT: A REVIEW
title_full APPLICATION OF NANOTECHNOLOGY IN WATER TREATMENT: A REVIEW
title_fullStr APPLICATION OF NANOTECHNOLOGY IN WATER TREATMENT: A REVIEW
title_full_unstemmed APPLICATION OF NANOTECHNOLOGY IN WATER TREATMENT: A REVIEW
title_sort application of nanotechnology in water treatment: a review
publisher Editora UNINGÁ
series UNINGÁ Review
issn 2178-2571
publishDate 2019-06-01
description Nanotechnology enables the control of matter at nanoscale and the creation of materials that have properties with a specific function, which allows its application in many fields. The Fields that are most affected by nanotechnology in environmental applications including water treatment are divided into: treatment and remediation, sensing and detection and pollution control. The use of nanostructured iron oxides like maghemite has been deeply studied due to the advantages that this material has in comparison to other materials. Its characteristics include its low cost, ease of separation through external magnetic fields, high surface area, high adsorption capacity and efficient action as a photocatalyst. This facilitates its use in processes such as coagulation flocculation. Considering this context, the present study, which is a bibliographic review, aims to contribute with the current bibliography about the use of nanoparticles of iron oxide in water treatment. Given the topic approached, it was possible to know the different methodologies proposed to obtain magnetic nanoparticles as well as their various applications focused on wastewater and water supply treatment.
topic nanoparticles
nanotechnology
water treatment
url http://revista.uninga.br/index.php/uningareviews/article/view/2526/2149
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