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Sempere Alemany, Francisco Javier.pdf - RUA - Universidad de ...

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Apéndice D 433<br />

D.3 – Desarrollo <strong>de</strong>l mo<strong>de</strong>lo cinético aplicado a la <strong>de</strong>scomposición térmica<br />

(TGA) <strong>de</strong>l agente espumante # :.<br />

k<br />

2H<br />

N C O ⎯<br />

dw<br />

dt<br />

dw<br />

dw<br />

4<br />

3<br />

6<br />

4<br />

4<br />

Total<br />

ADC<br />

H 4N<br />

4C2O2<br />

dt<br />

H 3N<br />

3C2O<br />

2<br />

dt<br />

4<br />

3<br />

4<br />

4<br />

4<br />

=<br />

2<br />

2<br />

2<br />

2<br />

2<br />

2<br />

especies sólidas<br />

=<br />

=<br />

2<br />

2<br />

2<br />

2<br />

i<br />

i<br />

∑ = ∑ ∑ ⎜ ⎟<br />

i dt<br />

i<br />

dt ⎠<br />

− k<br />

M<br />

M<br />

E1<br />

⎯→<br />

k<br />

H N C O + 2HNCO<br />

⎯<br />

E1<br />

− k<br />

dw<br />

⋅ w<br />

E 3<br />

nE1<br />

H 4N<br />

4C2O2<br />

⋅ w<br />

H 3N<br />

3C2O<br />

2<br />

H 4N<br />

4C<br />

2O2<br />

5<br />

6<br />

3<br />

6<br />

E 3 ⎯→<br />

* kE<br />

4<br />

H 4N<br />

4C2O2<br />

( HNCO)<br />

2 ⎯⎯→H6N<br />

4C2O2<br />

+ N<br />

H N C O<br />

kE5<br />

⎯⎯→s<br />

⋅ S + ( 1 − s ) ⋅ G<br />

kE<br />

6<br />

H N C O ⎯ ⎯⎯ →s<br />

⋅ S +<br />

H N C O + 2HNCO<br />

+ NH + N<br />

kE<br />

2<br />

2H<br />

N C O ⎯ ⎯⎯ →H<br />

N C O + 2HNCO<br />

+ N<br />

5<br />

6<br />

3<br />

4<br />

2<br />

2<br />

( 1<br />

especies sólidas<br />

nE<br />

1A<br />

H 4N<br />

4C2O2<br />

2<br />

− k<br />

2<br />

H N C O ( HNCO)<br />

E 2<br />

⋅ w<br />

4<br />

⋅ w<br />

nE<br />

3B<br />

HNCO<br />

reacciones<br />

nE<br />

2<br />

H 4N<br />

4C2O2<br />

⎛ dw<br />

1 nE<br />

1<br />

E<br />

⋅ ⋅ kE1⋅<br />

wH<br />

4 N 4C<br />

2O<br />

− k 2 E5⋅<br />

w<br />

2<br />

5<br />

6<br />

(D,E1)<br />

(D,E2)<br />

(D,E3)<br />

(D,E4)<br />

(D,E5)<br />

(D,E6)<br />

(D.3.1)<br />

(D.3.2)<br />

(D.3.4)<br />

# En este caso, y para simplicar las ecuaciónes cinéticas individuales, no se ha expresado la fórmula<br />

<strong>de</strong>sarrollada, sino que se ha con<strong>de</strong>nsado en función <strong>de</strong> la concentración <strong>de</strong> cada especie. No obstante,<br />

todas las reacciones siguen una cinética <strong>de</strong> or<strong>de</strong>n n.<br />

4<br />

2<br />

5<br />

− s ) ⋅ G<br />

6<br />

2<br />

⎝<br />

−<br />

⎞<br />

E j D,<br />

E j<br />

2<br />

2<br />

3<br />

n 5<br />

H 3N<br />

3C2O2<br />

*<br />

2<br />

+ 2CO<br />

2

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