The Exchange Mechanism of Alkaline and Alkaline-Earth Ions in Zeolite N

Molecules. 2019 Oct 10;24(20):3652. doi: 10.3390/molecules24203652.

Abstract

Zeolite N is a synthetic zeolite of the EDI framework family from the more than 200 known zeolite types. Previous experimental laboratory and field data show that zeolite N has a high capacity for exchange of ions. Computational modelling and simulation techniques are effective tools that help explain the atomic-scale behaviour of zeolites under different processing conditions and allow comparison with experiment. In this study, the ion exchange behaviour of synthetic zeolite N in an aqueous environment is investigated by molecular dynamics simulations. The exchange mechanism of K+ extra-framework cations with alkaline and alkaline-earth cations NH4+, Li+, Na+, Rb+, Cs+, Mg2+ and Ca2+ is explored in different crystallographic directions inside the zeolite N structure. Moreover, the effect of different framework partial charges on MD simulation results obtained from different DFT calculations are examined. The results show that the diffusion and exchange of cations in zeolite N are affected by shape and size of channels controlling the ion exchange flow as well as the nature of cation, ionic size and charge density.

Keywords: ammonium; concentration profile; diffusion; divalent cation; ion exchange mechanism; molecular dynamics; monovalent cation; radial distribution function; self-diffusion coefficient; zeolite N.

MeSH terms

  • Computer Simulation*
  • Metals, Alkaline Earth / chemistry*
  • Models, Chemical*
  • Zeolites / chemistry*

Substances

  • Metals, Alkaline Earth
  • Zeolites