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1788016 
Journal Article 
Adsorption of BTEX, MTBE and TAME on natural and modified diatomite 
Aivalioti, M; Papoulias, P; Kousaiti, A; Gidarakos, E 
2012 
Yes 
Journal of Hazardous Materials
ISSN: 0304-3894
EISSN: 1873-3336 
207-208 
117-127 
English 
The removal of BTEX (benzene, toluene, ethyl-benzene and m-,p-,o-xylenes), MTBE (methyl tertiary butyl ether) and TAME (tertiary amyl methyl ether) from aqueous solutions by raw, thermally, chemically and both chemically and thermally treated diatomite was studied, through batch adsorption experiments. In total, 14 different diatomite samples were created and tested. Selected physical characteristics of the adsorbents, such as specific surface area and pore volume distribution, were determined. Matrix and competitive adsorption effects were also explored. It was proved that the diatomite samples were effective in removing BTEX, MTBE and TAME from aqueous solutions, with the sample treated with HCl being the most effective, as far as its adsorption capacity and equilibrium time are concerned. Among the contaminants, BTEX appeared to have the strongest affinity, based on mass uptake by the diatomite samples. Matrix effects were proved to be strong, significantly decreasing the adsorption of the contaminants onto diatomite. The kinetics data proved a closer fit to the pseudo second order model, while the isotherm experimental data were a better fit to the Freundlich model. However, the latter produced values of the isotherm constant 1/n greater than one, indicating unfavorable adsorption. 
IRIS
• tert-Amyl methyl ether (TAME)
     Initial Litsearch 6/2018
          Pubmed
          Toxline
          WOS
• Ethylbenzene
     New Litsearch 4/2019
          PubMed
          Toxline
          WOS
     Litsearch Update April 2023
          SCOPUS