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Diels-Alder Reaction Experimental Design: Difference between revisions

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Line 41: Line 41:
  \mbox{s.t.} \\
  \mbox{s.t.} \\
  \dot{n_1}(t) & = & -k \cdot \frac{n_1(t) \ \cdot \ n_2(t)}{m_{tot}},  \\
  \dot{n_1}(t) & = & -k \cdot \frac{n_1(t) \ \cdot \ n_2(t)}{m_{tot}},  \\
\\
  \dot{n_2}(t) & = & -k \cdot \frac{n_1(t) \ \cdot \ n_2(t)}{m_{tot}}, \\
  \dot{n_2}(t) & = & -k \cdot \frac{n_1(t) \ \cdot \ n_2(t)}{m_{tot}}, \\
  \dot{n_2}(t) & = & \ \ k \cdot \frac{n_1(t) \ \cdot \ n_2(t)}{m_{tot}}, \\
  \dot{n_2}(t) & = & \ \ k \cdot \frac{n_1(t) \ \cdot \ n_2(t)}{m_{tot}}, \\

Revision as of 11:42, 4 December 2015

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Model Formulation

Differential equation system:

n1˙(t)=kn1(t)  n2(t)mtot,n2˙(t)=kn1(t)  n2(t)mtot,n2˙(t)=  kn1(t)  n2(t)mtot

Reaction velocity constant:

k=k1  exp(E1R  (1T(t)  1Tref)) + kcat  ccat  exp(λ  t)  exp(EcatR  ( 1T(t)  1Tref))

Total mass:

mtot=n1  M1 + n2  M2 + n3  M3 + n4  M4

Temperature in Kelvin:

T(t)=ϑ(t)+273


minx,G,F,utrace(F1(ttf))s.t.n1˙(t)=kn1(t)  n2(t)mtot,n2˙(t)=kn1(t)  n2(t)mtot,n2˙(t)=  kn1(t)  n2(t)mtot,h˙(t)=n3(t)  M3mtot  1000=g(x(to),x(tf),p)0c(x,u,p),tI0=h(x,u,p),tIx𝒳,u𝒰,pP.


State variables
Name Symbol Initial value (t0)
Molar number 1 n1(t) n1(t0)=na1
Molar number 2 n2(t) n2(t0)=na2
Molar number 3 n3(t) n3(t0)=na3
Constants
Name Symbol Value
Molar Mass M1 0.1362
Molar Mass M2 0.09806
Molar Mass M3 0.23426
Molar Mass M4 0.236
Universal gas constant R 8.314
Reference temperature Tref 293
Parameters
Name Symbol Value
Steric factor k1 p10.01
Steric factor kkat p20.10
Activation energie E1 p360000
Activation energie Ekat p440000
Catalyst deactivation coefficient λ p50.25

with pj=1, j=1,,5

Control variables
Name Symbol Interval
Initial molar number 1 na1 [0.4,9.0]
Initial molar number 2 na2 [0.4,9.0]
Initial molar number 3 na3 [0.4,9.0]
Concentration of the catalyst ckat [0.0,6.0]
Initial molar number 1 ϑ(t) [20.0,100.0]

Parameters