Question
Question: The air is a mixture of a number of gases. The major components are oxygen and nitrogen with approxi...
The air is a mixture of a number of gases. The major components are oxygen and nitrogen with approximate proportions of 20 to 79 by volume at 298K. The water is in equilibrium with air at a pressure of 10atm. At 298K, if Henry’s law constants for oxygen and nitrogen are 3.30×107mm and 6.51×107mm respectively, calculate the composition of these gases in water.
Solution
Use Henry's law to solve this question. Its formula is-
Pgas=kHχgas
The total pressure is 10atm which includes both nitrogen and oxygen, so find their individual partial pressure.
Complete answer:
We will use Henry’s law to solve this question. This law gives the relationship between the partial pressure of a particular gas above a solution and the amount of that gas dissolved in that solution. According to Henry, the partial pressure is directly proportional to the amount of gas dissolved in the solution. The proportionality constant is known as Henry’s constant and is abbreviated as kH. The equation is as follows:
Pgas=kHχgas
Where,Pgas is the partial pressure of the gas above the solution and χgas is the mole fraction of gas dissolved inside the solution.
Let’s find out the partial pressures of the gases mentioned in the question-
- Partial pressure of oxygen (PO2)
Taking the total pressure as 10atm which is also equal to7600mmHg (because 1atm=760mmHg) and the volume percentage of oxygen is20, its partial pressure is-
10020×7600=1520mmHg
- Partial pressure of nitrogen (PN2)
Similarly, taking the volume percentage of nitrogen as 79, its partial pressure is-
10079×7600=6004mmHg
We can now calculate the solubility of each of the gases individually as-
- solubility of oxygen