A thermal power plant of 800 MW capacity burns 50 T of coal/MW/day. Assume complete combustion of carbon compounds. During the burning process, the power plant has the following information: C content in coal = 40% (wt/wt); Temperature on stack = 2000C; Pressure in stack = 1.2 atm; Stack exit velocity = 30 m/sec; Diameter of the stack = 20 m. Estimate CO2 emission in Kg/d, mg/Am3, mg/Nm3 and ppm based on NTP? Need Asap

Refrigeration and Air Conditioning Technology (MindTap Course List)
8th Edition
ISBN:9781305578296
Author:John Tomczyk, Eugene Silberstein, Bill Whitman, Bill Johnson
Publisher:John Tomczyk, Eugene Silberstein, Bill Whitman, Bill Johnson
Chapter28: Special Refrigeration Applications
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A thermal power plant of 800 MW capacity burns
50 T of coal/MW/day. Assume complete
combustion of carbon compounds. During the
burning process, the power plant has the following
information: C content in coal = 40% (wt/wt);
Temperature on stack = 2000C; Pressure in stack =
1.2 atm; Stack exit velocity = 30 m/sec; Diameter
of the stack = 20 m.
Estimate CO2 emission in Kg/d, mg/Am3,
mg/Nm3 and ppm based on NTP?
%3D
Need Asap
Transcribed Image Text:A thermal power plant of 800 MW capacity burns 50 T of coal/MW/day. Assume complete combustion of carbon compounds. During the burning process, the power plant has the following information: C content in coal = 40% (wt/wt); Temperature on stack = 2000C; Pressure in stack = 1.2 atm; Stack exit velocity = 30 m/sec; Diameter of the stack = 20 m. Estimate CO2 emission in Kg/d, mg/Am3, mg/Nm3 and ppm based on NTP? %3D Need Asap
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