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Comparative removal of hazardous cationic dyes by MOF-5 and modified graphene oxide

  • Ali Akbar Mohammadi
  • , Soheila Moghanlo
  • , Malihe Samadi Kazemi
  • , Shahram Nazari
  • , Seid Kamal Ghadiri
  • , Hossein Najafi Saleh
  • , Mika Sillanpää
  • Neyshabur University of Medical Sciences
  • Zanjan University of Medical Sciences
  • Islamic Azad University
  • Khalkhal University of Medical Sciences
  • School of Public Health
  • Shahroud University of Medical Sciences
  • Shoolini University of Biotechnology and Management Sciences

Research output: Contribution to journalArticlepeer-review

63 Citations (Scopus)

Abstract

Among cationic dyes, malachite green (MG) is commonly used for dying purposes and also as an inhibitor in aquaculture, food, health, and chemical industries due to its cytotoxic effects. Therefore, MG removal is essential to keep the ecosystem and human health safety. Adsorption is a viable and versatile option and exploring efficient adsorbents have high priority. Herein, MOF-5 and aminated corn Stover reduced graphene oxide (ACS-RGO) of typical adsorbents of metal–organic-frameworks (MOFs) and carbon-based classes were studied for MG removal. MOF-5 and ACS-RGO had a specific surface area and total pore volume of 507.4 and 389.0 m2/g, and 0.271 cm3/g and 0.273 cm3/g, respectively. ACS-RGO was superior for MG adsorption and the kinetic rate coefficient for ACS-RGO was ~ 7.2 times compared to MOF-5. For ACS-RGO, MG removal remained high (> 94%) in a wide range of pH. However, dye removal was pH-dependent for MOF-5 and increased from ~ 32% to ~ 67% by increasing pH from 4 to 12. Increasing dye concentration from 25 mg/L to 100 mg/L decreased adsorption by MOF-5 and ACS-RGO for ~ 30% and 7%, respectively. Dye removal was evident in a few tens of seconds after adding ACS-RGO at doses above 0.5 g/L. A significant loss of 46% in adsorption was observed by decreasing MOF-5 mass from 1 to 0.1 g/L. ACS-RGO removed MG in multilayer with an exceptional adsorption capacity of 1088.27 mg/g. In conclusion, ACS-RGO, and MOF-5 showed promising kinetic rates and adsorption capacities toward MG.

Original languageEnglish
Article number15314
JournalScientific Reports
Volume12
Issue number1
DOIs
Publication statusPublished - Dec 2022

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 14 - Life Below Water
    SDG 14 Life Below Water

ASJC Scopus subject areas

  • Multidisciplinary

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