Problem 1
Production of propene using heterogeneous catalysts. Propene is one of the most valuable chemicals for the petrochemical industry. It can be synthesized by direct dehydrogenation of propane over a heterogeneous catalyst, , but the reaction is not economically feasible. Use the following average bond enthalpy relations: , , and . (a) What is the enthalpy change of the direct dehydrogenation of propane? Express the answer in terms of . (b) It is difficult to increase the amount of propene by raising the pressure at constant temperature — which law or principle best explains this? (c) For this reaction at equilibrium, what are the correct signs of , , and the change of when the temperature is raised to a higher value relative to the initial temperature?
Step 1 of 3: Bonds broken minus bonds formed
Analysis
Propane has 2 C–C and 8 C–H bonds; propene has 1 C=C, 1 C–C and 6 C–H, plus 1 H–H. So : the reaction is endothermic.
Common pitfall. Count the C–H bonds carefully: propane has 8 (3+4+1... i.e. gives 6+2 = 8), propene only 6 — the two removed hydrogens form .