1: Consider the loss of ozone in a dilute, low pressure Os/O2 gas mixture in the steady state at standard (room) temperature due to the reactions, Os + O2 0+202 Ka (1) O+0 K2, 202 (2) 1.1 Write down the net reaction of reactions (1) & (2). Hence state the relative rate of Os destruction to that of Oz creation. State the net rate of O destruction. 1.2 Write down the reaction rates (i.e. d/dt) for each of the three species. 1.3 Hence show that, K,no,nos K2NO, + Kan no

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Chapter11: Rate Of Reaction
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Problem 26QAP: When nitrogen dioxide reacts with carbon monoxide, the following reaction occurs. Â...
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1: Consider the loss of ozone in a dilute, low pressure Os/0, gas mixture in
the steady state at standard (room) temperature due to the reactions,
K
O3 + 02 0+ 202
Ka
(1)
O3 +0 K2, 202
1.1 Write down the net reaction of reactions (1) & (2). Hence state the relative
rate of O3 destruction to that of 02 creation. State the net rate of O
destruction.
1.2 Write down the reaction rates (i.e. d/dt) for each of the three species.
1.3 Hence show that,
K'no,noa
K2No, + K3n,
no
1.4 And that the rate of ozone destruction is given by,
Lo, = 2K2nonos
%3D
1.5 Hence derive an expression for Loa that is independent of O.
1.6 Using values of no, = 3.3 x 1010 m-3 and no, = 3.3 x 10 m-3 and the
rate constants listed below, calculate the rate lose of ozone at 25 °C.
K = 7.3 x 10-4 exp(-11400/T) m³ -s-1,
K2 = 1.8 x 10-5 exp (-2300/T) m3 .s-1
K3 = 6.9 x 10-28 exp (300/T).25 m³.
Transcribed Image Text:1: Consider the loss of ozone in a dilute, low pressure Os/0, gas mixture in the steady state at standard (room) temperature due to the reactions, K O3 + 02 0+ 202 Ka (1) O3 +0 K2, 202 1.1 Write down the net reaction of reactions (1) & (2). Hence state the relative rate of O3 destruction to that of 02 creation. State the net rate of O destruction. 1.2 Write down the reaction rates (i.e. d/dt) for each of the three species. 1.3 Hence show that, K'no,noa K2No, + K3n, no 1.4 And that the rate of ozone destruction is given by, Lo, = 2K2nonos %3D 1.5 Hence derive an expression for Loa that is independent of O. 1.6 Using values of no, = 3.3 x 1010 m-3 and no, = 3.3 x 10 m-3 and the rate constants listed below, calculate the rate lose of ozone at 25 °C. K = 7.3 x 10-4 exp(-11400/T) m³ -s-1, K2 = 1.8 x 10-5 exp (-2300/T) m3 .s-1 K3 = 6.9 x 10-28 exp (300/T).25 m³.
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