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To determine the equilibrium constant,
for the esterification reaction between ethanol and ethanoic acid, forming ethyl ethanoate and water, using a titration method.
The equation for the reaction is:
In this equilibrium reaction, the concentrations of reactants and products at equilibrium are used to calculate which provides an understanding of the extent of the reaction. The key steps involve determining the amount of ethanoic acid at equilibrium through titration with a strong base (sodium hydroxide), and then using these results to calculate .
Titration Results:
Moles of Ethanoic Acid Remaining:
Moles of Ethanoic Acid Reacted: Initially, there was 0.1 mol of ethanoic acid. The amount reacted is:
The same amount of ethanol has reacted.
Equilibrium Concentrations: At equilibrium, the concentration of ethyl ethanoate and water, both products, will be 0.069 mol since they are produced in a 1:1 ratio.
The equilibrium concentrations for each species can be summarised as follows:
Compound | Initial (mol) | Change (mol) | Equilibrium (mol) |
---|---|---|---|
Ethanol () | 0.100 | –0.069 | 0.031 |
Ethanoic acid () | 0.100 | –0.069 | 0.031 |
Ethyl ethanoate () | 0 | +0.069 | 0.069 |
Water () | 0 | +0.069 | 0.069 |
Calculation of : The expression for is:
Substituting the equilibrium concentrations:
The equilibrium constant, , for the esterification reaction is 5.0. This value indicates that at equilibrium, the concentration of the products (ethyl ethanoate and water) is higher than that of the reactants, showing the reaction favours the formation of the ester and water under the conditions used.
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