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MAIN REACTION AND OPERATING CONDITIONS C3H60) + HO) C3H8O(1) (A) (B) (C) Methanol is added to prevent phase splitting because propylene oxide is not completely

MAIN REACTION AND OPERATING CONDITIONS C3H60) + HO) C3H8O(1) (A) (B) (C) Methanol is added to prevent phase splitting because propylene oxide is not completely soluble in water. Propylene oxide and water are fed to the reactor in stochiometric ratio CA. 25 kmol/m Ao
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C3H6O(1)+H2O(1)C3H8O2(1) (A) (B) (C) Methanol is added to prevent phase splitting because propylene oxide is not completely soluble in water. Propylene oxide and water are fed to the reactor in stochiometric ratio CA0=25kmol/m3 Reaction Data rA=kCACB [rA]=kmol/m3s [k]=m3/kmols k=1.2108exp(RT18202) [EA]=kcal/kmol [T]=K TASK 1: Determination of Volume of a Single Batch Reactor Use a single batch reactor with constant volume Calculate operating times (t) in a single batch reactor for various conversion values Determine the optimum conversion and compare it with equilibrium conversion Try calculations for B=1 and =2(B=NBO/NAO) Consider a certain period of time for emptying, cleaning, filling after one batch which can be taken as 12h Use Polymath program for solving differential equations Plot conversion vs time graph Plot concentrations profiles of A,B and C vs time grophs

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