A new setup for the measurement of vapor-liquid phase equilibria of CO2-rich mixtures relevant for carbon capture and storage (CCS) transport conditions is presented. An isothermal analytical method with a variable volume cell is used. The apparatus is capable of highly accurate measurements in terms of pressure, temperature and composition, also in the critical region. Vapor-liquid equilibrium (VLE) measurements for the binary system CO2+N2 are reported at 223, 270, 298 and 303 K, with estimated standard uncertainties of maximum 0.006 K in the temperature, maximum 0.003 MPa in the pressure, and maximum 0.0004 in the mole fractions of the phases. These measurements are verified against existing data. Although some data exists, there is litt...
Understanding the phase behaviour of (CO2 + water + permanent gas) systems is critical for implement...
AbstractWithin the fight against global warming and the reduction of greenhouse-gases emission, rese...
Vapor-liquid equilibrium measurements for the binary system CO2 + CO are reported at 253, 273, 283 a...
A new setup for the measurement of vapor-liquid phase equilibria of CO2-rich mixtures relevant for c...
A new setup for the measurement of vapor-liquid phase equilibria of CO2-rich mixtures relevant for c...
A new setup for the measurement of vapor-liquid phase equilibria of CO2-rich mixtures relevant for c...
Accurate thermophysical data for the CO2-rich mixtures relevant for carbon capture, transport and st...
Accurate thermophysical data for the CO2-rich mixtures relevant for carbon capture, transport and st...
AbstractA facility designed for precise measurements of phase equilibria of CO2-rich mixtures releva...
Precise knowledge of vapor–liquid equilibrium (VLE) data of (CO2 + diluent) mixtures is crucial in t...
Accurate thermophysical data for the CO2-rich mixtures relevant for carbon capture, transport and st...
Understanding the phase behaviour of (CO2 + water + permanent gas) systems is critical for implement...
Vapor-liquid equilibria (VLE) data of the ternary mixture of CO2 + N2 + CH4 were measured at the iso...
Understanding the phase behaviour of (CO2 + water + permanent gas) systems is critical for implement...
AbstractA new setup for accurate measurement of phase behavior of CO2-rich mixtures relevant for CCS...
Understanding the phase behaviour of (CO2 + water + permanent gas) systems is critical for implement...
AbstractWithin the fight against global warming and the reduction of greenhouse-gases emission, rese...
Vapor-liquid equilibrium measurements for the binary system CO2 + CO are reported at 253, 273, 283 a...
A new setup for the measurement of vapor-liquid phase equilibria of CO2-rich mixtures relevant for c...
A new setup for the measurement of vapor-liquid phase equilibria of CO2-rich mixtures relevant for c...
A new setup for the measurement of vapor-liquid phase equilibria of CO2-rich mixtures relevant for c...
Accurate thermophysical data for the CO2-rich mixtures relevant for carbon capture, transport and st...
Accurate thermophysical data for the CO2-rich mixtures relevant for carbon capture, transport and st...
AbstractA facility designed for precise measurements of phase equilibria of CO2-rich mixtures releva...
Precise knowledge of vapor–liquid equilibrium (VLE) data of (CO2 + diluent) mixtures is crucial in t...
Accurate thermophysical data for the CO2-rich mixtures relevant for carbon capture, transport and st...
Understanding the phase behaviour of (CO2 + water + permanent gas) systems is critical for implement...
Vapor-liquid equilibria (VLE) data of the ternary mixture of CO2 + N2 + CH4 were measured at the iso...
Understanding the phase behaviour of (CO2 + water + permanent gas) systems is critical for implement...
AbstractA new setup for accurate measurement of phase behavior of CO2-rich mixtures relevant for CCS...
Understanding the phase behaviour of (CO2 + water + permanent gas) systems is critical for implement...
AbstractWithin the fight against global warming and the reduction of greenhouse-gases emission, rese...
Vapor-liquid equilibrium measurements for the binary system CO2 + CO are reported at 253, 273, 283 a...