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Magnetic nanoparticles incorporation into different substrates for dyes and heavy metals removal—A Review

  • Fahad Saleem Ahmed Khan
  • , Nabisab Mujawar Mubarak*
  • , Yie Hua Tan
  • , Rama Rao Karri
  • , Mohammad Khalid
  • , Rashmi Walvekar
  • , Ezzat Chan Abdullah
  • , Shaukat Ali Mazari
  • , Sabzoi Nizamuddin
  • *Corresponding author for this work

Research output: Contribution to journalReview articlepeer-review

Abstract

Substantial discharge of hazardous substances, especially dyes and heavy metal ions to the environment, has become a global concern due to many industries neglecting the environmental protocols in waste management. A massive discharge of contaminantsfrom different anthropogenic activities, can pose alarming threats to living species and adverse effect to the ecosystem stability. In the process of treating the polluted water, various methods and materials are used. Hybrid nanocomposites have attained numerous interest due to the combination of remarkable features of the organic and inorganic elements in a single material. In this regards, carbon and polymer based nanocomposites have gained particular interest because of their tremendous magnetic properties and stability. These nanocomposites can be fabricated using several approaches that include filling, template, hydrothermal, pulsed-laser irradiation, electro-spinning, detonation induced reaction, pyrolysis, ball milling, melt-blending, and many more. Moreover, carbon-based and polymer-based magnetic nanocomposites have been utilized for an extensive number of applications such as removal of heavy metal and dye adsorbents, magnetic resonance imaging, and drug delivery. This review emphasized mainly on the production of magnetic carbon and polymer nanocomposites employing various approaches and their applications in water and wastewater treatment. Furthermore, the future opportunities and challenges in applying magnetic nanocomposites for heavy metal ion and dye removal from water and wastewater treatment plant.

Original languageEnglish
Pages (from-to)43526-43541
Number of pages16
JournalEnvironmental Science and Pollution Research
Volume27
Issue number35
Early online date9 Sept 2020
DOIs
Publication statusPublished - Dec 2020

Keywords

  • Carbon nanocomposites
  • Fabrication approaches
  • Heavy metal and dye removal
  • Magnetic nanoparticle
  • Polymer nanocomposites
  • Water and wastewater treatment

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