From electromotive force (emf) measurements using solid oxide galvanic cells incorporating ZrOz-CaO and ThOz-YO~.s electrolytes, the chemical potentials of oxygen over the systems Fe + FeCrzO 4 + Cr20 ~ and Fe + FeV204 + V203 were calculated. The values may be represented by the equations: 2Fe(s, I) + Oz(g) + 2Cr2Oa(s) -- 2FeCr204 (s)Akto2 = - 151,400 + 34.7T (• cal= -633,400 + 145.5T(• J (750 to 1536~ A~tO2 = -158,000 + 38.4T(• cal= -661,000 + 160.5T(*1250) J (1536 to 1700~2Fe (s, I) + O2 (g) + 2V203 (s) -- 2FeV204 (s) A/~Oz = - 138,000 + 29.8T(+300) cal= - 577,500 + 124.7T (• J (750 to 1536~A/IO2 = -144,600 + 33.45T(-300) cal = -605,100 + 140.0T(~-1250) J (1536 to 1700~At the oxygen potentials corresponding to Fe + FeCrzO a + Cr203 e...
From electromotive force (emf) measurements using solid oxide galvanic cells incorporating ZrO2-CaO ...
Activities of FeCr2O4 in the spinel solid solutions FeXMg1−X Cr2O4 (0<X<1) in equilibrium wi...
Activities of FeCr2O4 in the spinel solid solutions FeXMg1−X Cr2O4 (0<X<1) in equilibrium wi...
From electromotive force (emf) measurements using solid oxide galvanic cells incorporating ZrOz-CaO ...
From electromotive force (emf) measurements using solid oxide galvanic cells incorporating ZrO2-CaO ...
From electromotive force (emf) measurements using solid oxide galvanic cells incorporating ZrO<sub>2...
The chemical potential of oxygen corresponding to the iron-rutile-ilmenite (IRI) and iron-ilmenite-u...
The chemical potential of oxygen corresponding to the iron-rutile-ilmenite (IRI) and iron-ilmenite-u...
The oxygen potentials corresponding to fayalite-quartz-iron (FQI) and fayalite-quartz-magnetite (FQM...
The oxygen potentials corresponding to fayalite-quartz-iron (FQI) and fayalite-quartz-magnetite (FQM...
Solid oxide galvanic cells using CaO-ZrO2 and CaO-ZrO2 in combination with YO1.5-ThO2 as electrolyte...
Solid oxide galvanic cells using CaO-ZrO2 and CaO-ZrO2 in combination with YO1.5-ThO2 as electrolyte...
Emf measurements are reported on cells using a thoria-yttria solid oxide electrolyte. The measured p...
Activities of FeCr2O4 in the spinel solid solutions Fe X Mg1−X Cr2O4 (0<X<1) in equilibrium with pur...
Activities of FeCr2O4 in the spinel solid solutions Fe X Mg1−X Cr2O4 (0<X<1) in equilibrium with pur...
From electromotive force (emf) measurements using solid oxide galvanic cells incorporating ZrO2-CaO ...
Activities of FeCr2O4 in the spinel solid solutions FeXMg1−X Cr2O4 (0<X<1) in equilibrium wi...
Activities of FeCr2O4 in the spinel solid solutions FeXMg1−X Cr2O4 (0<X<1) in equilibrium wi...
From electromotive force (emf) measurements using solid oxide galvanic cells incorporating ZrOz-CaO ...
From electromotive force (emf) measurements using solid oxide galvanic cells incorporating ZrO2-CaO ...
From electromotive force (emf) measurements using solid oxide galvanic cells incorporating ZrO<sub>2...
The chemical potential of oxygen corresponding to the iron-rutile-ilmenite (IRI) and iron-ilmenite-u...
The chemical potential of oxygen corresponding to the iron-rutile-ilmenite (IRI) and iron-ilmenite-u...
The oxygen potentials corresponding to fayalite-quartz-iron (FQI) and fayalite-quartz-magnetite (FQM...
The oxygen potentials corresponding to fayalite-quartz-iron (FQI) and fayalite-quartz-magnetite (FQM...
Solid oxide galvanic cells using CaO-ZrO2 and CaO-ZrO2 in combination with YO1.5-ThO2 as electrolyte...
Solid oxide galvanic cells using CaO-ZrO2 and CaO-ZrO2 in combination with YO1.5-ThO2 as electrolyte...
Emf measurements are reported on cells using a thoria-yttria solid oxide electrolyte. The measured p...
Activities of FeCr2O4 in the spinel solid solutions Fe X Mg1−X Cr2O4 (0<X<1) in equilibrium with pur...
Activities of FeCr2O4 in the spinel solid solutions Fe X Mg1−X Cr2O4 (0<X<1) in equilibrium with pur...
From electromotive force (emf) measurements using solid oxide galvanic cells incorporating ZrO2-CaO ...
Activities of FeCr2O4 in the spinel solid solutions FeXMg1−X Cr2O4 (0<X<1) in equilibrium wi...
Activities of FeCr2O4 in the spinel solid solutions FeXMg1−X Cr2O4 (0<X<1) in equilibrium wi...