Graphene oxide-based nanomaterials for the treatment of pollutants in the aquatic environment: Recent trends and perspectives - A review.


Journal

Environmental pollution (Barking, Essex : 1987)
ISSN: 1873-6424
Titre abrégé: Environ Pollut
Pays: England
ID NLM: 8804476

Informations de publication

Date de publication:
01 Aug 2022
Historique:
received: 19 02 2022
revised: 29 03 2022
accepted: 25 04 2022
pubmed: 2 5 2022
medline: 7 6 2022
entrez: 1 5 2022
Statut: ppublish

Résumé

Graphene oxide can be used to store energy, as electrodes and purify industrial and domestic wastewater as photocatalysts and adsorbents because of its remarkable thermal, electrical, and chemical capabilities. Toward understanding graphene oxide (GO) based nanomaterials considering the background factors, the present review study investigated their characteristics, preparation methods, and characterization processes. The removal of contaminants from wastewater has recently been a focus of attention for materials based on GO. Progress in GO synthesis and surface modification has shown that they can be used to immobilize enzymes. It is possible to immobilize enzymes with varying characteristics on graphene-oxide-based substrates without sacrificing their functioning, thus developing a new environmental remediation platform utilizing nano biocatalysts. GO doping and co-doping with a variety of heterogeneous semiconductor-based metal oxides were included in a brief strategy for boosting GO efficiency. A high band-gap material was also explored as a possibility for immobilization, which shifts the absorption threshold to the visible range and increases photoactivity. For water treatment applications, graphene-based nanomaterials were used in Fenton reactions, photocatalysis, ozonation, photo electrocatalysis, photo-Fenton, and a combination of photon-Fenton and photocatalysis. Nanoparticles made from GO improved the efficiency of composite materials when used for their intended applications. As a result of the analysis, prospects and improvements are clear, especially when it comes to scaling up GO-based wastewater treatment technologies.

Identifiants

pubmed: 35490997
pii: S0269-7491(22)00591-7
doi: 10.1016/j.envpol.2022.119377
pii:
doi:

Substances chimiques

Environmental Pollutants 0
Waste Water 0
Water Pollutants, Chemical 0
graphene oxide 0
Graphite 7782-42-5

Types de publication

Journal Article Review

Langues

eng

Sous-ensembles de citation

IM

Pagination

119377

Informations de copyright

Copyright © 2022 Elsevier Ltd. All rights reserved.

Auteurs

S Dayana Priyadharshini (S)

National Institute of Technology (Alumnus), Tiruchirappalli, 620 015, Tamil Nadu, India.

S Manikandan (S)

Department of Biotechnology, Saveetha School of Engineering, Saveetha Institute of Medical and Technical Sciences (SIMATS), Saveetha Nagar, Thandalam, Chennai - 602 105, Tamil Nadu, India.

R Kiruthiga (R)

Instituto de Investigaciónes Científicas y Tecnológicas (IDICTEC), Universidad de Atacama, Copayapu 485, Copiapo, Chile.

Udayabhaskar Rednam (U)

Instituto de Investigaciónes Científicas y Tecnológicas (IDICTEC), Universidad de Atacama, Copayapu 485, Copiapo, Chile.

P Suresh Babu (PS)

Department of Biotechnology, Saveetha School of Engineering, Saveetha Institute of Medical and Technical Sciences (SIMATS), Saveetha Nagar, Thandalam, Chennai - 602 105, Tamil Nadu, India; Faculty of Pharmaceutical Sciences, UCSI University, 56000 Cheras, Kuala Lumpur, Malaysia.

R Subbaiya (R)

Department of Biological Sciences, School of Mathematics and Natural Sciences, The Copperbelt University, Riverside, Jambo Drive, P O Box 21692, Kitwe, Zambia.

N Karmegam (N)

Department of Botany, Government Arts College (Autonomous), Salem, 636 007, Tamil Nadu, India.

Woong Kim (W)

Department of Environmental Engineering, Kyungpook National University, Daegu, 41566, Republic of Korea.

M Govarthanan (M)

Department of Environmental Engineering, Kyungpook National University, Daegu, 41566, Republic of Korea. Electronic address: gova.muthu@gmail.om.

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Classifications MeSH