Utilizing low-cost purple coneflower (Echniacea purpurea) marc for competitive sorption of 152+154Eu(III), 60Co(II) and 134Cs(I) radionuclides

J Environ Radioact. 2024 May:275:107426. doi: 10.1016/j.jenvrad.2024.107426. Epub 2024 Mar 23.

Abstract

Echinacea purpurea marc (EPM), a residual of echinacea herb after the extraction process, was used as a natural low-cost sorbent for competitive sorption of 152+154Eu(III), 60Co(II) and 134Cs(I) radionuclides. The EPM was ground to prepare it for use in the sorption process. The variables influencing the sorption process were assessed, including pH, contact time, concentrations of metal ions, and temperature. EPM was characterized by different analytical instruments such as FTIR, SEM, XRD, and DTA/TGA. pH 4.0 was selected as the ideal pH value for competitive sorption of the studied ions. Adsorption kinetics data found that the sorption followed a pseudo-second-order model. The adsorption isotherm data was significantly better suited by the Langmuir isotherms in the case of Eu(III) ions while following Freundlich in the case of Co(II) and Cs(I) ions. Positive ΔHo values confirm the endothermic character of metal ion sorption onto EPM. The loading efficiencies of Eu(III), Co(II), and Cs(I) ions in the EPM column were 66.67%, 9.59%, and 4.81%, respectively. The EPM is a cost-effective and efficient separation of Eu(III) ions more than Cs(I) and Co(II) ions. Therefore, in the future, it will be a starting point for the separation of trivalent elements of lanthanide ions.

Keywords: (152+154)Eu(III); (60)Co(II) and (134)Cs(I) radionuclides; Competitive sorption; Echinacea purpurea marc.

MeSH terms

  • Adsorption
  • Cesium Radioisotopes* / analysis
  • Cesium Radioisotopes* / chemistry
  • Cobalt Radioisotopes* / chemistry
  • Europium / chemistry
  • Kinetics
  • Soil Pollutants, Radioactive / analysis

Substances

  • Cesium Radioisotopes
  • Cobalt Radioisotopes
  • Europium
  • Cesium-134
  • Soil Pollutants, Radioactive