Stream 1 containing an aqueous solution of compound A (MWA = 200) is mixed with stream 2 containing an aqueous solution of compound B (MW3 = 100) and fed to a reactor. Compound A reacts with compound...


Stream 1 containing an aqueous solution of compound A (MWA = 200) is mixed with stream 2 containing an aqueous solution of compound B (MW3 = 100) and fed to a reactor. Compound A reacts with compound B as shown in the block flow diagram shown<br>below:<br>Stream 1<br>Reactor<br>Stream 3<br>Stream 4<br>Stream 2<br>A+28 D<br>The concentrations and flow rates for these feed streams are given in the table below:<br>Stream 1<br>Stream 2<br>Total molar flow<br>100<br>123<br>(mol/min)<br>Specific Gravity<br>1.02<br>1.0<br>Concentration of A<br>3<br>(mol%)<br>Concentration of B<br>8.1<br>(mol%)<br>The conversion of A in the reactor is 78 %. You may assume the molar mass of water is 18. Determine the:<br>h) molar flow rate (mol/min) of component B in the reactor effluent (stream 4).<br>i) molar percentage of component B in the stream 4<br>j) mass flow rate of component D in stream 4 (gm/min)<br>

Extracted text: Stream 1 containing an aqueous solution of compound A (MWA = 200) is mixed with stream 2 containing an aqueous solution of compound B (MW3 = 100) and fed to a reactor. Compound A reacts with compound B as shown in the block flow diagram shown below: Stream 1 Reactor Stream 3 Stream 4 Stream 2 A+28 D The concentrations and flow rates for these feed streams are given in the table below: Stream 1 Stream 2 Total molar flow 100 123 (mol/min) Specific Gravity 1.02 1.0 Concentration of A 3 (mol%) Concentration of B 8.1 (mol%) The conversion of A in the reactor is 78 %. You may assume the molar mass of water is 18. Determine the: h) molar flow rate (mol/min) of component B in the reactor effluent (stream 4). i) molar percentage of component B in the stream 4 j) mass flow rate of component D in stream 4 (gm/min)

Jun 07, 2022
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