Title of article :
Equation of State for Molten Alkali Metals from Surface Tension. Part II
Author/Authors :
N. Mehdipour and A. Boushehri ، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 1998
Abstract :
This work presents a new method for predicting the equation of state for molten
alkali metals, based on statistical-mechanical perturbation theory from two
scaling constants that are available from measurements at ordinary pressures
and temperatures. The scaling constants are the surface tension and the liquid
density at the boiling temperature (yb, pb). Also, a reference temperature, TRef,
is preseInted at which the product (TRefTb1/2) is an advantageous corresponding
temperature for the second virial coefficient, B2(T). The virial coefficient of
alkali metals cannot be expected to obey a law of corresponding states for
normal fluids, because two singlet and triplet potentials are involved. The free
parameter of the Ihm-Song-Mason equation of state compensates for the
uncertainties in B2(T). The vapor pressure of molten alkali metals at low temperatures
is very low and the experimental data for B2(T) of these metals are
scarce. Therefore, an equation of state for alkali metals from the surface tension
and liquid density at boiling temperature (yb, pb) is a suitable choice. The
results, the density of Li through Cs from the melting point up to several
hundred degrees above the boiling temperature, are within 5%.
Keywords :
alkali metals , corresponding states , surfacetension. , Equation of state
Journal title :
International Journal of Thermophysics
Journal title :
International Journal of Thermophysics