Chemistry · Ch 8 — Ionic Equilibrium
Hydrolysis of Salt of Weak Acid and Weak Base
Hydrolysis of Salt of Weak Acid and Weak Base
Consider ammonium acetate, , where BOTH ions hydrolyse: and . Whether the resulting solution is acidic, basic or neutral now depends purely on which parent was the weaker: if , the solution is acidic (pH < 7); if , the solution is basic (pH > 7); if , the solution is neutral. The relation between the two dissociation constants and the hydrolysis constant here is , and the pH of the solution is given by -- notably independent of the salt's concentration, unlike the single-hydrolysis cases above.
Example 8.8 – hydrolysis and pH of sodium acetate. Calculate (i) the degree of hydrolysis, (ii) the hydrolysis constant, and (iii) the pH of 0.1M , given for . Since is the salt of a weak acid and strong base, this is anionic hydrolysis (Section 8.8.2 formulas apply). First . (i) . (ii) . (iii) . …
Worked out. Calculate (i) the degree of hydrolysis, (ii) the hydrolysis constant, and (iii) the pH of 0.1M , given for . Since is the salt of a weak acid and strong base, this is anionic hydrolysis (Section 8.8.2 formulas apply). First . (i) . (ii) . (iii) $pH=7+\tfrac12pK_a+\tfrac12\log_{10}C=7+\tfrac{4.74}{2}+\tfr …
Worked out. Calculate (i) the hydrolysis constant, (ii) the degree of hydrolysis, and (iii) the pH of 0.05M sodium carbonate solution, given for (the relevant conjugate acid for the first hydrolysis step of carbonate) -- worked the same way as Example 8.8's anionic-hydrolysis method, using this and M in the and formulas of Section …