Abstract

Molar isothermal compressions, molar isobaric expansions, molar coefficients of thermal pressure, and internal pressure were calculated over the whole concentration range of {water (1)+tert-butanol (2)} mixture at pressures from 0.1 to 100MPa and temperatures from 278.15 to 323.15K. It was revealed that the extremes, observed on concentration dependences of molar isothermal compression KT,m and molar isobaric expansion EP,m of the mixture, became more pronounced with pressure growth and temperature lowering. Values of molar thermal pressure coefficients of the mixture sharply rose at compositions with small TBA mole fraction and then decreased practically linearly with the alcohol content increasing. Temperature and pressure dependences of the mixture internal pressure were almost linear, and at low TBA concentrations changed significantly from the dependences of water, tert-butanol and their mixtures at large alcohol content.

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