Question 8.10: Buffer pH Calculation What is the pH of a phosphate buffer s...

Buffer pH Calculation

What is the pH of a phosphate buffer solution containing 1.0 mol/L of sodium dihydrogen phosphate, NaH _{2} PO _{4}, and 0.50 mol/L of sodium hydrogen phosphate, Na _{2} HPO _{4}?

Strategy

Use the Henderson-Hasselbalch equation to determine the pH. You must know either the number of moles of both the conjugate acid and base or the concentrations of the conjugate acid or base. Divide the conjugate base by the conjugate acid, take the log of that ratio and add it to the p K_{ a } of the conjugate acid.

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Solution The weak acid in this problem is H _{2} PO _{4}^{-}; its ionization produces HPO _{4}{ }^{2-}.

The p K_{ a } of this acid is 7.21 (from Table 8.3). Under the weak acid and its conjugate base are shown their concentrations.

 

TABLE 8.3 K_{ s } \text { and } p K_{ a } Values for Some Weak Acids
Formula Name K_{a} p K _{a}
H _{3} PO _{4} Phosphoric acid 7.5 \times 10^{-3} 2.12
HCOOH Formic acid 1.8 \times 10^{-4} 3.75
CH _{3} CH ( OH ) COOH Lactic acid 1.4 \times 10^{-4} 3.86
CH _{3} COOH Acetic acid 1.8 \times 10^{-5} 4.75
H _{2} CO _{3} Carbonic acid 42 \times 1 n^{-7} 6.37
H _{2} PO _{4}^{-} Dihydrogen phosphate ion 6.2 \times 10^{-8} 7.21
H _{3} BO _{3} Boric acid 7.3 \times 10^{-10} 9.14
NH _{4}^{+} Ammonium ion 5.6 \times 10^{-10} 9.25
HCN Hydrocyanic acid 4.9 \times 10^{-10} 9.31
C _{6} H _{5} OH Phenol 1.3 \times 10^{-10} 9.89
HCO _{3}^{-} Bicarbonate ion 5.6 \times 10^{-11} 10.25
HPO _{4}^{2-} Hydrogen phosphate ion 2.2 \times 10^{-13} 12.66

 

\begin{array}{l}H _{2} PO _{4}^{-}+ H _{2} O \rightleftharpoons HPO _{4}^{2-}+ H _{3} O ^{+} \quad p K_{ a }=7.21\\1.0 mol / L \quad 0.50 mol / L\end{array}K_{ a }

 

Substituting these values in the Henderson-Hasselbalch equation gives a pH of 6.91.

 

\begin{aligned}pH &=7.21+\log \frac{0.50}{1.0} \\&=7.21-0.30=6.91\end{aligned}

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