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. 2024 Jun 12;14:13563. doi: 10.1038/s41598-024-64382-0

Table 6.

Kinetic equation for Fischer –Tropsch synthesis reaction rate according to LHHW.

Model Kinetic equation Site balance
C-I1 kPCO/(1+aPCO+bPH20.5) s + COs + Hs
C-I2 kPH2/(1+aPCO+bPH20.5)2 s + COs + Hs
C-I3 kPCOPH20.5/(1+aPCO+bPH20.5)2 s + COs + Hs
C-I3′ kPCOPH20.5/(1+bPH20.5)2 s + Hs
C-I4 kPCOPH2/(1+aPCO+bPH20.5)2 s + COs + Hs
C-I4′ kPCOPH2/(1+aPCOPH20.5)2 s + HOCs
C-I5 kPCOPH2/(1+aPCO)2 s + COs
C-II1 kPCO/(1+aPCO+bPH2) s + COs + H2s
C-II2 kPH2/(1+aPCO+bPH2) s + COs + H2s
C-II3 kPCOPH2/(1+aPCO+bPH2)2 s + COs + H2s
C-II4 kPCOPH22/(1+aPCOPH2)2 s + CH2Os
C-III1 kPCO/(1+aPCO) s + Cos
C-III2 kPCOPH2/(1+aPCO) s + Cos
C-III3 kPCOPH22/(1+aPCO) s + Cos
C-III3′ kPCOPH22/(1+aPCOPH2) s + CH2Os
C-IV2 kPCOPH20.5/(1+aPH20.5) s + Hs
C-IV3 kPCOPH2/(1+aPH20.5+bPCOPH20.5)2 s + HOCs + Hs
C-V1 kPH2/(1+aPH2o.5)2 s + Hs
C-V2 kPCOPH2/(1+aPH20.5)2 s + Hs
C-V3 kPCOPH22/(1+aPH20.5+bPCOPH20.5)3 s + CH2Os + Hs
C-VI1 kPH2/(1+aPH2) s + H2s
C-VI2 kPCOPH2/(1+aPH2) s + H2s
C-VII1 kPCO/(1+aPCO0.5+bPH20.5)2 s + Cs + Os + Hs
C-VII2 kPH2/(1+aPCO0.5)2 s + Cs + Os
C-VII2′ kPH2/(1+aPCO0.5+bPH20.5)2 s + Cs + Os + Hs
C-VII3 kPCO0.5PH20.5/(1+aPCO0.5+bPH20.5)2 s + Cs + Os + Hs
C-VIII3 kPCO0.5PH2/(1+aPCO0.5+bPH2)2 s + Cs + Os + H2s
C-IX1 kPCO/(1+aPCO0.5)2 s + Cs + Os
C-IX2 kPH2PCO0.5/(1+aPCO0.5) s + Cs + Os
C-X3 kPCO0.5PH2/(1+aPCO0.5+bPH20.5)3 s + Cs + Os + Hs