1. A boiler burns fuel oil with the following analysis by mass : 80% C 18% H2 2%S 30% excess air is supplied to the process. Calculate the stoichiometric ratio by mass and the % Carbon Dioxide present in the dry products. (15.62/1 14.9% CO2) 2. A boiler burns coal with the following analysis by mass: 75% C 15% H2 7%S remainder ash Calculate the % Carbon Dioxide present in the dry products if 20% excess air is supplied. (16.5% CO2) 3. Calculate the % of each dry product when coal is burned stoichiometrically in air. The analysis of the coal is: 80% C 10% H2 5% S and 5% ash. (76.7%N, 22.5% CO2 0.8% SO2)

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1. A boiler burns fuel oil with the following analysis by mass :
80% C 18% H2
2%S
30% excess air is supplied to the process. Calculate the stoichiometric ratio by
mass and the % Carbon Dioxide present in the dry products.
(15.62/1 14.9% CO2)
2. A boiler burns coal with the following analysis by mass :
75% C 15% H2
7%S remainder ash
Calculate the % Carbon Dioxide present in the dry products if 20% excess air is
supplied.
(16.5% CO2)
3. Calculate the % of each dry product when coal is burned stoichiometrically in air.
The analysis of the coal is:
80% C
10% H2 5% S and 5% ash.
(76.7%N, 22.5% CO2 0.8% SO2)
Transcribed Image Text:1. A boiler burns fuel oil with the following analysis by mass : 80% C 18% H2 2%S 30% excess air is supplied to the process. Calculate the stoichiometric ratio by mass and the % Carbon Dioxide present in the dry products. (15.62/1 14.9% CO2) 2. A boiler burns coal with the following analysis by mass : 75% C 15% H2 7%S remainder ash Calculate the % Carbon Dioxide present in the dry products if 20% excess air is supplied. (16.5% CO2) 3. Calculate the % of each dry product when coal is burned stoichiometrically in air. The analysis of the coal is: 80% C 10% H2 5% S and 5% ash. (76.7%N, 22.5% CO2 0.8% SO2)
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