Determine the emission rate (lb/hr) of HCI (MW= 36.45 g/mol) resulting from the incineration of 760 lb/hr of tetrachlorophenol (C6HOHC14, MW = 231.9 g/mol).

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Chapter1: Introduction
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12-2 B
Determine the emission rate (Ib/hr) of HCI (MW= 36.45 g/mol) resulting from the incineration of 760 Ib/hr of tetrachlorophenol (C6HOHCI4, MW = 231.9 g/mol).
477.8
484.9
119.5
471.7
484.1
117.9
Transcribed Image Text:12-2 B Determine the emission rate (Ib/hr) of HCI (MW= 36.45 g/mol) resulting from the incineration of 760 Ib/hr of tetrachlorophenol (C6HOHCI4, MW = 231.9 g/mol). 477.8 484.9 119.5 471.7 484.1 117.9
12-2 C
Determine the DRE of HCI (MW= 36.45 g/mol) resulting from the incineration of 760 Ib/hr of tetrachlorophenol (C6HOHCI4, MW = 231.9 g/mol). The outlet
emission rate of HCI is given in the table in the textbook for question 12-2 as 4.3 Ib/hr. The DRE is most nearly .
99.1%
98.7%
99.5%
96.7%
95.6%
98.9%
Transcribed Image Text:12-2 C Determine the DRE of HCI (MW= 36.45 g/mol) resulting from the incineration of 760 Ib/hr of tetrachlorophenol (C6HOHCI4, MW = 231.9 g/mol). The outlet emission rate of HCI is given in the table in the textbook for question 12-2 as 4.3 Ib/hr. The DRE is most nearly . 99.1% 98.7% 99.5% 96.7% 95.6% 98.9%
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