Q.The air is a mixture of a number of gases. The major components are oxygen and nitrogen with approximate proportion of 20% is to 79% by volume at 298 K. The water is in equilibrium with air at a pressure of 10 atm. At 298 K if the Henry's law constants for oxygen and nitrogen at 298 K are mm and mm respectively, calculate the composition of these gases in water.
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Start your 14-day free trial to unlock the full solution →Henry’s Law relates the partial pressure of a gas above a liquid to its mole fraction in the liquid. Using the given Henry’s constants and the partial pressures of O2 and N2 in air at 10 atm total pressure, we find the mole fractions in water: and .
Why Henry’s Law?
When a gas mixture (like air) is in contact with water, each gas dissolves independently according to its own solubility. The amount that dissolves depends on the partial pressure of that gas above the liquid and Henry's constant, .
Henry’s Law states:
where is the partial pressure of the gas above the liquid, is its mole fraction in the liquid, and is Henry’s constant (in the same pressure units). Both constants here are given in mm of Hg, so we must work entirely in mm Hg.
Step-by-step solution
1. Convert total pressure to mm Hg
2. Find partial pressures of O2 and N2
3. Apply Henry’s Law for each gas
For oxygen:
For nitrogen: …
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