aqueous solution of H-SO, (Solution A) is to be mixed with a H;SO, (Solution B) to produce a 75.0 wt% solution (Solution C).- Solution A Flowmeter A Analyzer Solution C 75% H2S0, Solution B 90% H,SO, Flowmeter B MIXER The flow rate and concentration of Solution A change periodically, so that it is necessary to adjust the flow rate of Solution B to keep the product H,SO, concentration constant. Flowmeters A and B have linear calibration plots of mass flow rate (mn) versus meter reading
aqueous solution of H-SO, (Solution A) is to be mixed with a H;SO, (Solution B) to produce a 75.0 wt% solution (Solution C).- Solution A Flowmeter A Analyzer Solution C 75% H2S0, Solution B 90% H,SO, Flowmeter B MIXER The flow rate and concentration of Solution A change periodically, so that it is necessary to adjust the flow rate of Solution B to keep the product H,SO, concentration constant. Flowmeters A and B have linear calibration plots of mass flow rate (mn) versus meter reading
Chemistry
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ISBN:9781305957404
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Chapter1: Chemical Foundations
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![4.21. A dilute aqueous solution of H SO, (Solution A) is to be mixed with a solution containing 90.0 wt%
H2SO, (Solution B) to produce a 75.0 wt% solution (Solution C).
Solution A
Flowmeter A
Analyzer
Solution C
75% H,S0,
Solution B
90% H,SO.
Flowmeter B
MIXER
The flow rate and concentration of Solution A change periodically, so that it is necessary to adjust
the flow rate of Solution B to keep the product H,SO, concentration constant.
Flowmeters A and B have linear calibration plots of mass flow rate (in) versus meter reading
(R), which pass through the following points:
Flowmeter A: mA
150 lb/h, RA
25
%3D
%3D
500 lbm/h, RA
70
%3D
%3D
Flowmeter B: mp = 200 lbm/h, Ry = 20
800 lbm/h, Rg 60
%3D
The analyzer calibration is a straight line on a semilog plot of %H;SO4(x) on a logarithmic scale
versus meter reading (R,) on a linear scale. The line passes through the points (x
and (x
(a) Calculate the flow rate of Solution B needed to process 300 lb/h of 55% H,SO, (Solution A),
and the resulting flow rate of Solution C. (The calibration data are not needed for this part.)
20%, R,
4.0)
%3D
100%, R,
10.0).
%3D](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F876b7e88-71ea-4367-ae48-86bad5b877c2%2Fe0288fc2-1a90-4785-9c0f-0a65706594e5%2Faa7q01o_processed.jpeg&w=3840&q=75)
Transcribed Image Text:4.21. A dilute aqueous solution of H SO, (Solution A) is to be mixed with a solution containing 90.0 wt%
H2SO, (Solution B) to produce a 75.0 wt% solution (Solution C).
Solution A
Flowmeter A
Analyzer
Solution C
75% H,S0,
Solution B
90% H,SO.
Flowmeter B
MIXER
The flow rate and concentration of Solution A change periodically, so that it is necessary to adjust
the flow rate of Solution B to keep the product H,SO, concentration constant.
Flowmeters A and B have linear calibration plots of mass flow rate (in) versus meter reading
(R), which pass through the following points:
Flowmeter A: mA
150 lb/h, RA
25
%3D
%3D
500 lbm/h, RA
70
%3D
%3D
Flowmeter B: mp = 200 lbm/h, Ry = 20
800 lbm/h, Rg 60
%3D
The analyzer calibration is a straight line on a semilog plot of %H;SO4(x) on a logarithmic scale
versus meter reading (R,) on a linear scale. The line passes through the points (x
and (x
(a) Calculate the flow rate of Solution B needed to process 300 lb/h of 55% H,SO, (Solution A),
and the resulting flow rate of Solution C. (The calibration data are not needed for this part.)
20%, R,
4.0)
%3D
100%, R,
10.0).
%3D
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