2. Ethanol is produced by the hydration of ethylene according to the first reaction below. However, some of the products are converted to diethyl ether according to the second reaction. C2H4 + H20 →...


2. Ethanol is produced by the hydration of ethylene according to the first reaction below.<br>However, some of the products are converted to diethyl ether according to the second<br>reaction.<br>C2H4 + H20 → C2H50H<br>2C2H;OH → (C2H5)20 + H20<br>The feed to the reactor contains ethylene, steam, and N2 An effluent analysis is given in<br>the following table:<br>H2O<br>(C2HS)20<br>Component<br>%mol<br>C2H4<br>C2H5OH<br>N2<br>39.12<br>45.08<br>2.95<br>0.27<br>12.58<br>With a basis of 100 kmol of effluent, determine the following:<br>a. (1<br>- Determine the extent of both reactions.<br>b.<br>, Determine the fractional conversion of ethylene.<br>с.<br>etermine the fractional yield of ethanol.<br>d.<br>) Determine the fractional conversion of the excess reactant at maximum<br>extent of the desired reaction.<br>

Extracted text: 2. Ethanol is produced by the hydration of ethylene according to the first reaction below. However, some of the products are converted to diethyl ether according to the second reaction. C2H4 + H20 → C2H50H 2C2H;OH → (C2H5)20 + H20 The feed to the reactor contains ethylene, steam, and N2 An effluent analysis is given in the following table: H2O (C2HS)20 Component %mol C2H4 C2H5OH N2 39.12 45.08 2.95 0.27 12.58 With a basis of 100 kmol of effluent, determine the following: a. (1 - Determine the extent of both reactions. b. , Determine the fractional conversion of ethylene. с. etermine the fractional yield of ethanol. d. ) Determine the fractional conversion of the excess reactant at maximum extent of the desired reaction.

Jun 11, 2022
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