CO+x2 K2​+4xCO⋅x+H⋅xHCO⋅x+H⋅xH2​CO⋅x+H⋅xH3​CO⋅x+H⋅xH3​COH⋅x​⇌CO⋅x⇌4H⋅xkn​→​HCO⋅x+x→H2​CO⋅x+x→H3​CO⋅x+x→H3​COH⋅x+xK2​⇌H3​

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answerhappygod
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CO+x2 K2​+4xCO⋅x+H⋅xHCO⋅x+H⋅xH2​CO⋅x+H⋅xH3​CO⋅x+H⋅xH3​COH⋅x​⇌CO⋅x⇌4H⋅xkn​→​HCO⋅x+x→H2​CO⋅x+x→H3​CO⋅x+x→H3​COH⋅x+xK2​⇌H3​

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Co X2 K2 4xco X H Xhco X H Xh2 Co X H Xh3 Co X H Xh3 Coh X Co X 4h Xkn Hco X X H2 Co X X H3 Co X X H3 Coh X Xk2 H3 1
Co X2 K2 4xco X H Xhco X H Xh2 Co X H Xh3 Co X H Xh3 Coh X Co X 4h Xkn Hco X X H2 Co X X H3 Co X X H3 Coh X Xk2 H3 1 (27.42 KiB) Viewed 42 times
b)Indicate which would be the parameters to be evaluated andwhat strategy would be followed if you have experimental dataobtained from a differential reactor (reaction rate data fordifferent values ​​of partial pressures of reactant and/orproducts)
c)Now suppose that reaction 5 is the rate-controlling stage andthat all other stages are in equilibrium. Differentiate thevelocity expression.
note: the assumption of weak adsorption of HxCO compounds is nolonger valid
CO+x2 K2​+4xCO⋅x+H⋅xHCO⋅x+H⋅xH2​CO⋅x+H⋅xH3​CO⋅x+H⋅xH3​COH⋅x​⇌CO⋅x⇌4H⋅xkn​→​HCO⋅x+x→H2​CO⋅x+x→H3​CO⋅x+x→H3​COH⋅x+xK2​⇌H3​COH+x​
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