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diagramme d'Ellingham

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Document de cours MathSpé PC 2012-2013<br />

2 C (gr) + O2 (g) = 2 CO (g) (1)<br />

∆rG°1 (T)= -221,06-179,02.10 -3 .T (kJ.mol -1 )<br />

C (gr) + O2 (g) = CO2 (g) (2)<br />

∆rG°2(T)=-393,52-3,04.10 -3 .T (kJ.mol -1 )<br />

2 CO (g) + O2 = 2 CO2 (g) (3)<br />

∆rG°(T)=-565,98+172,89.10 -3 .T (kJ.mol -1 )<br />

-100<br />

-200<br />

-300<br />

-400<br />

-500<br />

-600<br />

Diagramme de Boudouard<br />

0<br />

0 200 400 600 800 1000 1200 1400 1600<br />

CO (g)<br />

C (gr)<br />

CO 2 (g)<br />

CO (g)<br />

C. Saury PC Page 3 sur 10<br />

T (K)<br />

Figure 5 : Etude graphique M+1/2 O 2 = MO<br />

y RT ln (PO2/P°)<br />

)<br />

Zone de stabilité<br />

de ……….<br />

Figure 6 : Pression de corrosion<br />

T2<br />

T1<br />

T3<br />

Zone de stabilité<br />

de ……….<br />

rG°(T)<br />

RTln(PO2/P°)<br />

CO 2 (g)<br />

C (gr)<br />

T

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