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Measurement and correlation of the (p, ρ, T) behaviour of liquid ethylene glycol at temperatures from (283.3 to 393.1) K and pressures up to 100.1 MPa

Xiaoxian Yang, Catherine C. Sampson, Ophelia Frotscher, Markus Richter

2020The Journal of Chemical Thermodynamics19 citationsDOI

Topics & Concepts

ChemistryEthylene glycolThermodynamicsExponentAtmospheric temperature rangeOscillation (cell signaling)Range (aeronautics)Work (physics)Analytical Chemistry (journal)ChromatographyMaterials scienceOrganic chemistryPhysicsPhilosophyLinguisticsBiochemistryComposite materialThermodynamic properties of mixturesPhase Equilibria and ThermodynamicsChemical Thermodynamics and Molecular Structure
Measurement and correlation of the (p, ρ, T) behaviour of liquid ethylene glycol at temperatures from (283.3 to 393.1) K and pressures up to 100.1 MPa | Litcius