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Growth of rGO nanostructures via facile wick and oil flame synthesis for environmental remediation

journal contribution
posted on 2024-11-02, 16:59 authored by G. S. Lekshmi, R. Tamilselvi, Karthika Prasad, Olha Bazaka, Igor Levchenko, Kateryna Bazaka, Mandhakini Mohandas
Oil spills into ocean or coastal waters can result in significant damage to the environment via pollution of aquatic ecosystems. Absorbents based on reduced graphene oxide (rGO) foams have the capacity to remove minor or major oil spills. However, conventional chemical synthesis of rGO often uses petrochemical precursors, potentially harmful chemicals, and requires special processing conditions that are expensive to maintain. In this work, an alternative cost-effective and environmentally friendly approach suitable for large-scale production of high-quality rGO directly from used cooking sunflower oil is discussed. Thus, produced flaky graphene structures are effective in absorbing used commercial sunflower oil and engine oil, via monolayer physisorption in the case of used sunflower and engine oils facilitated by van der Waals forces, π–π stacking and hydrophobic interactions, π-cation (H+) stacking and radical scavenging activities. From adsorption kinetic models, first-order kinetics provides a better fit for used sunflower oil adsorption (R2 = 0.9919) and second-order kinetics provides a better fit for engine oil adsorption (R2 = 0.9823). From intra-particle diffusion model, R2 for USO is 0.9788 and EO is 0.9851, which indicates that both used sunflower and engine oils adsorption processes follow an intra-particle diffusion mechanism. This study confirms that waste-derived rGO could be used for environmental remediation.

History

Related Materials

  1. 1.
    DOI - Is published in 10.1007/s42823-021-00244-3
  2. 2.
    ISSN - Is published in 19764251

Journal

Carbon Letters

Issue

31

Start page

763

End page

777

Total pages

15

Publisher

Springer

Place published

Germany

Language

English

Copyright

© Korean Carbon Society 2021

Former Identifier

2006107962

Esploro creation date

2023-01-30

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