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Analyse how a student could design a chemical synthesis process to be undertaken in the school laboratory - HSC - SSCE Chemistry - Question 33 - 2022 - Paper 1

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Analyse how a student could design a chemical synthesis process to be undertaken in the school laboratory. In your response, use a specific process relating to the s... show full transcript

Worked Solution & Example Answer:Analyse how a student could design a chemical synthesis process to be undertaken in the school laboratory - HSC - SSCE Chemistry - Question 33 - 2022 - Paper 1

Step 1

selection of reagent(s)

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Answer

The process to be undertaken is esterification, which synthesizes the organic compound methyl ethanoate from methanol and ethanoic acid. The reagents selected for this reaction are:

  • Ethanoic Acid: A carboxylic acid which reacts with alcohols to form esters.
  • Methanol: An alcohol that readily reacts with the carboxylic acid.
  • Concentrated Sulfuric Acid (H₂SO₄): This is used as a catalyst to speed up the reaction.

Step 2

reaction conditions

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The esterification reaction should be performed under reflux conditions. This entails heating the mixture with a reflux condenser to prevent loss of volatile components. The conditions include:

  • Temperature: A high temperature is required to increase the reaction rate.
  • Time: The reaction should be allowed to proceed for approximately 30–60 minutes to ensure complete conversion.

Step 3

any potential hazards and any safety precautions to minimise the risk

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Answer

Safety considerations are crucial:

  • Flammability: Both methanol and ethanoic acid are flammable, so it is essential to work away from open flames. Use a heating mantle instead of a Bunsen burner.
  • Corrosiveness: Concentrated sulfuric acid is corrosive, and liquid carboxylic acids are harmful. Safety goggles and gloves should be worn at all times to prevent skin and eye contact.

Step 4

yield and purity of the product(s)

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To maximize the yield and purity of methyl ethanoate, the reaction should be performed at high temperatures with sufficient reflux time. The purity can be assessed through techniques such as:

  • Distillation: To separate the ester from unreacted reagents and by-products.
  • Analysis: Using methods like gas chromatography to determine the purity of the final product.

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