128
Views
3
CrossRef citations to date
0
Altmetric
Articles

Adsorption of methylene blue from aqueous media using graphene oxide Synthesised from bio-soot wastes

, , &
Pages 872-882 | Received 11 Aug 2020, Accepted 29 Nov 2020, Published online: 30 Dec 2020

References

  • Chen L, Li Y, Du Q, et al. High performance agar/graphene oxide composite aerogel for methylene blue removal. Carbohydr Polym [Internet]. 2017;155:345–353.
  • Banerjee S, Benjwal P, Singh M, et al. Graphene oxide (rGO)-metal oxide (TiO 2/Fe 3 O 4) based nanocomposites for the removal of methylene blue. Appl Surf Sci [Internet]. 2018;439:560–568.
  • Peng W, Li H, Liu Y, et al. Adsorption of methylene blue on graphene oxide prepared from amorphous graphite: effects of pH and foreign ions. J Mol Liq [Internet]. 2016;221:82–87.
  • Huang T, Yan M, He K, et al. Efficient removal of methylene blue from aqueous solutions using magnetic graphene oxide modified zeolite. J Colloid Interface Sci [Internet]. 2019;543:43–51.
  • Liu Y, Huang S, Zhao X, et al. Fabrication of three-dimensional porous β-cyclodextrin/chitosan functionalized graphene oxide hydrogel for methylene blue removal from aqueous solution. Colloids Surf A Physicochem Eng Asp Internet]. 2018;539:1–10.
  • Li Y, Du Q, Liu T, et al. Comparative study of methylene blue dye adsorption onto activated carbon, graphene oxide, and carbon nanotubes. Chem Eng Res Des [Internet]. 2013;91(2):361–368.
  • Zhang W, Zhou C, Zhou W, et al. Fast and considerable adsorption of methylene blue dye onto graphene oxide. Bull Environ Contam Toxicol. 2011;87(1):86–90.
  • Shams SS, Zhang LS, Hu R, et al. Synthesis of graphene from biomass: A green chemistry approach. Mater Lett Internet]. 2015;161:476–479.
  • Muramatsu H, Kim YA, Hayashi T. Synthesis and characterization of graphene from rice husks. Tanso. 2016;2016(275):182–190.
  • Raghavan N, Thangavel S, Venugopal G. A short review on preparation of graphene from waste and bioprecursors. Appl Mater Today Internet]. 2017;7:246–254.
  • Tripathi KM, Sonker AK, Sonkar SK, et al. Pollutant soot of diesel engine exhaust transformed to carbon dots for multicoloured imaging of E. coli and sensing cholesterol. RSC Adv. 2014;4(57):30100–30107.
  • Tapia A, Salgado S, Martín P, et al. Chemical composition and heterogeneous reactivity of soot generated in the combustion of diesel and GTL (Gas-to-Liquid) fuels and amorphous carbon Printex U with NO2 and CF3COOH gases. Atmos Environ Internet]. 2018;177:214–221.
  • Jacobson RS, Korte AR, Vertes A, et al. The Molecular Composition of Soot. Angew Chem Int Educ. 2020;59(11):4484–4490. .
  • Montes-Morán MA, Suárez D, Menéndez JA, et al. On the nature of basic sites on carbon surfaces: an overview. Carbon N Y. 2004;42(7):1219–1225.
  • Diatto P, Anzani M, Tinucci L, et al. Investigation on soot dispersant properties and wear effects in the boundary lubrication regime. Tribol Ser. 1999;36:809–819.
  • Cao Y, Li X. Adsorption of graphene for the removal of inorganic pollutants in water purification: a review. Adsorption. 2014;20(5–6):713–727.
  • Thakur K, Graphene KB. Graphene oxide-based composites for removal of organic pollutants: a review. J Chem Eng Data. 2019;64(3):833–867.
  • Padhi DK, Parida KM, Singh SK. Mechanistic aspects of enhanced congo red adsorption over graphene oxide in presence of methylene blue. J Environ Chem Eng [Internet]. 2016;4(3):3498–3511.
  • Dawood S, Sen TK. Removal of anionic dye congo red from aqueous solution by raw pine and acid-treated pine cone powder as adsorbent: equilibrium, thermodynamic, kinetics, mechanism and process design. Water Res [Internet]. 2012;46(6):1933–1946.
  • Biswal SK, Panigrahi GK, Sahoo SK. Green synthesis of Fe2O3-Ag nanocomposite using Psidium guajava leaf extract: an eco-friendly and recyclable adsorbent for remediation of Cr(VI) from aqueous media. Biophys Chem Internet]. 2020;263:106392.
  • Clague ADH, Donnet JB, Wang TK, et al. A comparison of diesel engine soot with carbon black. Carbon N Y. 1999;37(10):1553–1565.
  • Ain QT, Haq SH, Alshammari A, et al. The systemic effect of PEG-nGO-induced oxidative stress in vivo in a rodent model. Beilstein J Nanotechnol. 2019;10:901–911.
  • Saxena S, Tyson TA, Shukla S, et al. Investigation of structural and electronic properties of graphene oxide Investigation of structural and electronic properties of graphene oxide. Appl Phys Lett. 2012;99:67–70.
  • Bradder P, Ling SK, Wang S, et al. Dye adsorption on layered graphite oxide. J Chem Eng Data. 2011;56(1):138–141.
  • Wu ZL, Liu F, Li CK, et al. A sandwich-structured graphene-based composite: preparation, characterization, and its adsorption behaviors for Congo red. Colloids Surf A Physicochem Eng Asp Internet]. 2016;509:65–72.
  • Goswami S, Banerjee P, Datta S, et al. Graphene oxide nanoplatelets synthesized with carbonized agro-waste biomass as green precursor and its application for the treatment of dye rich wastewater. Process Saf Environ Prot Internet]. 2017;106:163–172.
  • Huang ZN, Wang XL, Yang DS. Adsorption of Cr(VI) in wastewater using magnetic multi-wall carbon nanotubes. Water Sci Eng [Internet]. 2015;83:226–232.
  • Wu Z, Zhong H, Yuan X, et al. Adsorptive removal of methylene blue by rhamnolipid-functionalized graphene oxide from wastewater. Water Res Internet]. 2014;67:330–344.
  • Yan H, Tao X, Yang Z, et al. Effects of the oxidation degree of graphene oxide on the adsorption of methylene blue. J Hazard Mater Internet]. 2014;268:191–198.
  • Gui CX, Wang QQ, Hao SM, et al. Sandwichlike magnesium silicate/reduced graphene oxide nanocomposite for enhanced Pb 2+ and methylene blue adsorption. ACS Appl Mater Interfaces. 2014;6(16):14653–14659.
  • Singh DK, Kumar V, Mohan S, et al. Polylysine functionalized graphene aerogel for the enhanced removal of Cr(VI) through adsorption: kinetic, isotherm, and thermodynamic modeling of the process. J Chem Eng Data. 2017;62(5):1732–1742.
  • He C, Yang Z, Ding J, et al. Effective removal of Cr(VI) from aqueous solution by 3-aminopropyltriethoxysilane-functionalized graphene oxide. Colloids Surf A Physicochem Eng Asp Internet]. 2017;520:448–458.
  • Zhang J, Chen N, Su P, et al. Fluoride removal from aqueous solution by Zirconium-Chitosan/Graphene Oxide Membrane. React Funct Polym Internet]. 2017;114:127–135.
  • Zhao D, Gao X, Wu C, et al. Facile preparation of amino functionalized graphene oxide decorated with Fe3O4nanoparticles for the adsorption of Cr(VI). Appl Surf Sci Internet]. 2016;384:1–9.
  • Xu D, Zhu K, Zheng X, et al. Poly(ethylene-co vinyl alcohol) Functional Nanofiber Membranes for the Removal of Cr(VI) from Water. Ind Eng Chem Res. Internet]. 2015;54(27):6836–6844.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.