1. Draw control volume diagram of reactors for each of the following conditions and write down the mass balance equations using different notations shown in figure: C, Qout Cin Qin V, C Reaction rate constant =k Figure: Sample CMFR/CFSTR showing influent and effluent flows, volume, reaction rate components. a) Steady state CMFR/CFSTR with conservative pollutant b) Steady state CMFR/CFSTR with non-conservative pollutant having first order growth rate c) Non-steady state CMFR/CFSTR with non-conservative pollutants having second order decay rate
1. Draw control volume diagram of reactors for each of the following conditions and write down the mass balance equations using different notations shown in figure: C, Qout Cin Qin V, C Reaction rate constant =k Figure: Sample CMFR/CFSTR showing influent and effluent flows, volume, reaction rate components. a) Steady state CMFR/CFSTR with conservative pollutant b) Steady state CMFR/CFSTR with non-conservative pollutant having first order growth rate c) Non-steady state CMFR/CFSTR with non-conservative pollutants having second order decay rate
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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
Transcribed Image Text:1. Draw control volume diagram of reactors for each of the following conditions and write down the
mass balance equations using different notations shown in figure:
C, Qout
Cin Qin
V, C
Reaction rate constant =k
Figure: Sample CMFR/CFSTR showing influent and effluent flows, volume, reaction rate components.
a) Steady state CMFR/CFSTR with conservative pollutant
b) Steady state CMFR/CFSTR with non-conservative pollutant having first order growth rate
c) Non-steady state CMFR/CFSTR with non-conservative pollutants having second order decay rate
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