For an ideal solution, the pH is defined as the negative logarithm of the hydrogen ion concentration. For a non-ideal solution, an accurate measurement of the pH must consider the negative logarithm of the hydrogen ion activity rather than concentration. In such a solution, the pH can be more accurately defined as the negative logarithm of a product of the hydrogen ion concentration and its activity coefficient.
In solutions of very low ionic strength—for example, pure water—the activity coefficient of the hydrogen ion is close to one when the ionic strength of the solution increases due to the addition of an electrolyte that does not donate or accept a proton. This results in a slight decrease in the pH of the solution. In other words, the addition of an electrolyte increases the hydrogen ion activity, or the effective hydrogen ion concentration in the solution, which decreases the pH of the solution.
章から 2:
Now Playing
Chemical Equilibria
515 閲覧数
Chemical Equilibria
1.2K 閲覧数
Chemical Equilibria
1.3K 閲覧数
Chemical Equilibria
826 閲覧数
Chemical Equilibria
1.3K 閲覧数
Chemical Equilibria
496 閲覧数
Chemical Equilibria
696 閲覧数
Chemical Equilibria
599 閲覧数
Chemical Equilibria
426 閲覧数
Chemical Equilibria
409 閲覧数
Chemical Equilibria
293 閲覧数
Chemical Equilibria
567 閲覧数
Chemical Equilibria
914 閲覧数
Chemical Equilibria
578 閲覧数
Chemical Equilibria
411 閲覧数
See More
Copyright © 2023 MyJoVE Corporation. All rights reserved