• Title of article

    Molecular Dynamics Simulations of Freezing Behavior of Pure Water and 14% Water-NaCl Mixture Using the Coarse-Grained Model

  • Author/Authors

    Fatemi، Mahmood نويسنده School of Chemistry,Department of Physical Chemistry,University of Tehran,Tehran,Iran , , Foroutan، Masumeh نويسنده School of Chemistry,Department of Physical Chemistry,University of Tehran,Tehran,Iran ,

  • Issue Information
    فصلنامه با شماره پیاپی 77 سال 2016
  • Pages
    10
  • From page
    1
  • To page
    10
  • Abstract
    We performed molecular dynamics simulations using the coarsegrained model to study the freezing behavior of pure water and 14% watersalt mixture in a wide range of temperatures for a very long time around 50 nanoseconds. For the salty water, an interface in nanoscale was used. For both systems, the freezing behavior of water molecules was studied using some qualities such as density, total energy, and radial distribution function. For the 14% watersalt mixture, the equilibrium freezing temperature depression observed in the simulations was well consistent with the experimental data. Contrary to the watersalt mixture, however, the abovementioned quantities changed dramatically for the pure water at the freezing point. The plots of the total energy versus time shows the freezing point of 14% watersalt mixture was 265 K that is 9 K less than the freezing point of pure water. The reduction of freezing point is in very good agreement with the experimental freezing point. The results of the simulation showed that in the less temperature than obtained freezing point, the sodium and chloride ions tendency to network formation and rejection of solution lead to reduction of water molecules accumulation.
  • Keywords
    pure water , nanoscale , Freezing point , 14% Water-salt mixture , coarse-grained model
  • Journal title
    Iranian Journal of Chemistry and Chemical Engineering (IJCCE)
  • Serial Year
    2016
  • Journal title
    Iranian Journal of Chemistry and Chemical Engineering (IJCCE)
  • Record number

    2397611