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Which cement is used in sewage and water treatment plants?
  • a)
     Rapid Hardening Cement
  • b)
    Low Heat Cement
  • c)
    Sulphate Resisting Cement
  • d)
     Quick Setting Cement
Correct answer is option 'C'. Can you explain this answer?
Verified Answer
Which cement is used in sewage and water treatment plants?a)Rapid Hard...
Cement with composition has very good resistance to sulphate attack. This type of cement is used in the construction of foundation in soil where subsoil contains very high proportions of sulphate.
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Which cement is used in sewage and water treatment plants?a)Rapid Hard...
Sulphate Resisting Cement is used in sewage and water treatment plants because of its high resistance to sulphate attacks. Sulphate attacks occur when sulphates in the soil or water react with the cement paste, causing expansion and cracking of the concrete. This can lead to the deterioration of the concrete structure and can compromise the effectiveness of the treatment plant.

Benefits of Sulphate Resisting Cement:

1. High durability: Sulphate Resisting Cement has a low permeability, which makes it highly durable in harsh environments.

2. Resistance to sulphate attacks: Sulphate Resisting Cement has a high resistance to sulphate attacks, which makes it ideal for use in sewage and water treatment plants.

3. Low heat of hydration: Low heat of hydration reduces the risk of thermal cracking and improves the durability of the concrete.

4. High strength: Sulphate Resisting Cement has a high strength, which makes it ideal for use in structures that are subjected to heavy loads.

Conclusion:

Sulphate Resisting Cement is the best choice for use in sewage and water treatment plants due to its high resistance to sulphate attacks. It has a low heat of hydration, high durability, and high strength, making it ideal for use in harsh environments.
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Which cement is used in sewage and water treatment plants?a)Rapid Hardening Cementb)Low Heat Cementc)Sulphate Resisting Cementd)Quick Setting CementCorrect answer is option 'C'. Can you explain this answer?
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