Detail publikačního výsledku

Thermodynamic Properties of the Gas Mixture SF6 and Cu in the range from 298.15 to 3000 K and 0.1 to 2 MPa

COUFAL, O.

Originální název

Thermodynamic Properties of the Gas Mixture SF6 and Cu in the range from 298.15 to 3000 K and 0.1 to 2 MPa

Anglický název

Thermodynamic Properties of the Gas Mixture SF6 and Cu in the range from 298.15 to 3000 K and 0.1 to 2 MPa

Druh

Článek recenzovaný mimo WoS a Scopus

Originální abstrakt

The article deals with relations for the calculation of thermodynamic properties of an ideal heterogeneous system in condition of local thermodynamic equilibrium. The relations are applied to a system Sb of products of reaction of SF6 with b mol Cu, for b(0,5). In the temperature and pressure regions considered, Sb is heterogeneous for b higher zero. The thermodynamic properties of gaseous system Sb for b higher zero were published in (1,2,3), for heterogeneous system Sb they have not been published yet. The article is follow-up on article (4) dealing with equilibrium composition of system Sb.

Anglický abstrakt

The article deals with relations for the calculation of thermodynamic properties of an ideal heterogeneous system in condition of local thermodynamic equilibrium. The relations are applied to a system Sb of products of reaction of SF6 with b mol Cu, for b(0,5). In the temperature and pressure regions considered, Sb is heterogeneous for b higher zero. The thermodynamic properties of gaseous system Sb for b higher zero were published in (1,2,3), for heterogeneous system Sb they have not been published yet. The article is follow-up on article (4) dealing with equilibrium composition of system Sb.

Autoři

COUFAL, O.

Vydáno

01.10.1995

ISSN

1240-4292

Periodikum

Journal of High Temperature Chemical Processes

Svazek

4(1995)

Číslo

3

Stát

Česká republika

Strany od

159

Strany počet

26

BibTex

@article{BUT38448,
  author="Oldřich {Coufal}",
  title="Thermodynamic Properties of the Gas Mixture SF6 and Cu in the range from 298.15 to 3000 K and 0.1 to 2 MPa",
  journal="Journal of High Temperature Chemical Processes",
  year="1995",
  volume="4(1995)",
  number="3",
  pages="26",
  issn="1240-4292"
}