Adsorption of direct blue 106 dye using zinc oxide nanoparticles prepared via green synthesis technique

Environ Sci Pollut Res Int. 2023 Jun;30(26):69666-69682. doi: 10.1007/s11356-023-26954-x. Epub 2023 May 4.

Abstract

Zinc oxide nanoparticles (ZnO-NPs) have in recent times shown effective adsorption capability for the confiscation of colour contaminants from aqueous environments (aquatic ecosystems or water bodies) due to the fact that ZnO contains more functional groups. Direct blue 106 (DB106) dye was selected for this present study as a model composite due to its wide range of uses in textiles (cotton and wools), woods, and paper industries, as well as their therapeutic applications, along with its potential for impairments. This study therefore focuses on the use of DB106 dye as a model composite due to its wide range of uses in textiles (cotton and wools), woods, and paper industries, as well as their therapeutic applications and their potential for impairments. Furthermore, the surface functionalization, shape, and composite pore size were revealed by TEM, FTIR, UV, and BET techniques. The current study uses green synthesis method to prepare ZnO-NPs as an adsorbent for the DB106 dye molecules adsorption under various conditions using the batch adsorption process. The adsorption of DB106 dye to the ZnO-NPs biosorbent was detected to be pH-dependent, with optimal adsorption of DB106 (anionic) dye particles observed at pH 7. DB106 dye adsorption to the synthesized ZnO-NPs adsorbent was distinct by means of the linearized Langmuir (LNR) and pseudo-second-order (SO) models, with an estimated maximum adsorption capacity (Qm) of 370.37 mg/g.

Keywords: Direct blue 106 dye; Industrial wastes; Nanoparticles; Sorption; Water treatment.

MeSH terms

  • Adsorption
  • Ecosystem
  • Hydrogen-Ion Concentration
  • Kinetics
  • Nanoparticles* / chemistry
  • Water Pollutants, Chemical* / chemistry
  • Zinc Oxide* / chemistry

Substances

  • Zinc Oxide
  • Water Pollutants, Chemical