2. A reactor is being designed to treat wastewater containing 500 grams methanol (CH3OH) per day. In the process, methanol (CH3OH) is completely oxizdized to form CO2 and H20. a. Write a balanced reaction for the complete oxidation of methanol. 1 CH3ОН + 1.5 02 → 1 СО2 + 1 H20 b. Calculate the number of moles of oxygen that would be required in the reaction each day. moles 02 / day Check c. Calculate the equivalent volume of oxvgen (at 25°C and 1 atm of pressure)

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2. A reactor is being designed to treat wastewater containing 500 grams methanol
(CH3OH) per day. In the process, methanol (CH3OH) is completely oxizdized to form
CO2 and H20.
a. Write a balanced reaction for the complete oxidation of methanol.
1 CH3OH +
1.5
02 →
1
СО2 +
1
H20
b. Calculate the number of moles of oxygen that would be required in the
reaction each day.
moles 02 / day
Check
c. Calculate the equivalent volume of oxygen (at 25°C and 1 atm of pressure)
that would be required each day.
L 02 /day
d. Calculate the equivalent volume of air that would be requied each day. (Note:
air is comprised of 21% O2 by volume.)
L(air) / day
Transcribed Image Text:2. A reactor is being designed to treat wastewater containing 500 grams methanol (CH3OH) per day. In the process, methanol (CH3OH) is completely oxizdized to form CO2 and H20. a. Write a balanced reaction for the complete oxidation of methanol. 1 CH3OH + 1.5 02 → 1 СО2 + 1 H20 b. Calculate the number of moles of oxygen that would be required in the reaction each day. moles 02 / day Check c. Calculate the equivalent volume of oxygen (at 25°C and 1 atm of pressure) that would be required each day. L 02 /day d. Calculate the equivalent volume of air that would be requied each day. (Note: air is comprised of 21% O2 by volume.) L(air) / day
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