Application of Magnetic Carbon Nanocomposite from Agro-waste for the Removal of Pollutants from Water and Wastewater

Water pollution has significant impact on water usage, and various contaminants, such as organic and inorganic compounds, heavy metals, dyes, pharmaceuticals compounds, pathogens and radioactive compounds, are implicated. The quest for globalisation, structural developments and other related anthrop...

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Main Authors: Jayanthi, Barasarathi, Palsan Sannasi, Abdullah, Emenike Chijioke, Uche
Format: Article
Published: Elsevier Ltd. 2022
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Online Access:http://eprints.intimal.edu.my/1652/
https://doi.org/10.1016/j.chemosphere.2022.135384
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spelling my-inti-eprints.16522022-08-22T07:21:07Z http://eprints.intimal.edu.my/1652/ Application of Magnetic Carbon Nanocomposite from Agro-waste for the Removal of Pollutants from Water and Wastewater Jayanthi, Barasarathi Palsan Sannasi, Abdullah Emenike Chijioke, Uche Q Science (General) QD Chemistry TP Chemical technology Water pollution has significant impact on water usage, and various contaminants, such as organic and inorganic compounds, heavy metals, dyes, pharmaceuticals compounds, pathogens and radioactive compounds, are implicated. The quest for globalisation, structural developments and other related anthropogenic activities promote the release of contaminants that induce water pollution. Hence, treatment and remediation options that can remove pollutants from watercourses and wastewater have been developed. Applied nanotechnology using carbon nanocomposites has recently drawn attention because it has the advantages of low preparation cost, high surface area, pore volume and environmental stability. Magnetic carbon nanocomposites usually exhibit excellent performance in adsorbing contaminants from aqueous solutions, and thus expanding the use of nanotechnology in water treatment is of great importance. Therefore, this review explores the geographical outlook of water pollution, sources of water pollution and types of contaminants found in water and discusses the use of carbon nanocomposites as an emerging sustainable technology for water pollutant removal. The various properties of carbon-based composites influence the extent of pollutant adsorption during water treatment processes. Most carbon-based nanocomposites are generated from biomass produced by agro-waste materials. Magnetic activated carbon nanocomposites produced from walnut shells and rice husk waste can remove 78% of Cd(II) from contaminated aqueous systems. Magnetic nanocomposites from peanut shell, tea waste, curcumin nanoparticles, sunflower head waste, rice husk, hydrophyte biomass, palm waste and sugarcane bagasse facilitate hydrothermal carbonisation, chemical precipitation, co-precipitation, chemical activation, calcination and fast pyrolysis. These nanocomposites have benefitted wastewater treatment by increasing efficiency in removing pharmaceutical, dye and organic contaminants, such as promazine, ciprofloxacin, amoxicillin, rhodamine 6G, methyl blue, phenol and phenanthrene. Hence, this review discusses the relatively low costs, good biocompatibility, large surface-to-volume ratio, magnetic separation capability and reusability carbon materials and highlights the advantages of using magnetic carbon nanocomposites in the removal of contaminants from water or wastewater through adsorption mechanisms. Elsevier Ltd. 2022-10 Article PeerReviewed Jayanthi, Barasarathi and Palsan Sannasi, Abdullah and Emenike Chijioke, Uche (2022) Application of Magnetic Carbon Nanocomposite from Agro-waste for the Removal of Pollutants from Water and Wastewater. Chemosphere, 305 (135384). ISSN 0045-6535 https://doi.org/10.1016/j.chemosphere.2022.135384
institution INTI International University
building INTI Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider INTI International University
content_source INTI Institutional Repository
url_provider http://eprints.intimal.edu.my
topic Q Science (General)
QD Chemistry
TP Chemical technology
spellingShingle Q Science (General)
QD Chemistry
TP Chemical technology
Jayanthi, Barasarathi
Palsan Sannasi, Abdullah
Emenike Chijioke, Uche
Application of Magnetic Carbon Nanocomposite from Agro-waste for the Removal of Pollutants from Water and Wastewater
description Water pollution has significant impact on water usage, and various contaminants, such as organic and inorganic compounds, heavy metals, dyes, pharmaceuticals compounds, pathogens and radioactive compounds, are implicated. The quest for globalisation, structural developments and other related anthropogenic activities promote the release of contaminants that induce water pollution. Hence, treatment and remediation options that can remove pollutants from watercourses and wastewater have been developed. Applied nanotechnology using carbon nanocomposites has recently drawn attention because it has the advantages of low preparation cost, high surface area, pore volume and environmental stability. Magnetic carbon nanocomposites usually exhibit excellent performance in adsorbing contaminants from aqueous solutions, and thus expanding the use of nanotechnology in water treatment is of great importance. Therefore, this review explores the geographical outlook of water pollution, sources of water pollution and types of contaminants found in water and discusses the use of carbon nanocomposites as an emerging sustainable technology for water pollutant removal. The various properties of carbon-based composites influence the extent of pollutant adsorption during water treatment processes. Most carbon-based nanocomposites are generated from biomass produced by agro-waste materials. Magnetic activated carbon nanocomposites produced from walnut shells and rice husk waste can remove 78% of Cd(II) from contaminated aqueous systems. Magnetic nanocomposites from peanut shell, tea waste, curcumin nanoparticles, sunflower head waste, rice husk, hydrophyte biomass, palm waste and sugarcane bagasse facilitate hydrothermal carbonisation, chemical precipitation, co-precipitation, chemical activation, calcination and fast pyrolysis. These nanocomposites have benefitted wastewater treatment by increasing efficiency in removing pharmaceutical, dye and organic contaminants, such as promazine, ciprofloxacin, amoxicillin, rhodamine 6G, methyl blue, phenol and phenanthrene. Hence, this review discusses the relatively low costs, good biocompatibility, large surface-to-volume ratio, magnetic separation capability and reusability carbon materials and highlights the advantages of using magnetic carbon nanocomposites in the removal of contaminants from water or wastewater through adsorption mechanisms.
format Article
author Jayanthi, Barasarathi
Palsan Sannasi, Abdullah
Emenike Chijioke, Uche
author_facet Jayanthi, Barasarathi
Palsan Sannasi, Abdullah
Emenike Chijioke, Uche
author_sort Jayanthi, Barasarathi
title Application of Magnetic Carbon Nanocomposite from Agro-waste for the Removal of Pollutants from Water and Wastewater
title_short Application of Magnetic Carbon Nanocomposite from Agro-waste for the Removal of Pollutants from Water and Wastewater
title_full Application of Magnetic Carbon Nanocomposite from Agro-waste for the Removal of Pollutants from Water and Wastewater
title_fullStr Application of Magnetic Carbon Nanocomposite from Agro-waste for the Removal of Pollutants from Water and Wastewater
title_full_unstemmed Application of Magnetic Carbon Nanocomposite from Agro-waste for the Removal of Pollutants from Water and Wastewater
title_sort application of magnetic carbon nanocomposite from agro-waste for the removal of pollutants from water and wastewater
publisher Elsevier Ltd.
publishDate 2022
url http://eprints.intimal.edu.my/1652/
https://doi.org/10.1016/j.chemosphere.2022.135384
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score 13.160551