why sodium and potassium are stored in kerosene class 10 Why is sodium kept in kerosene?

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Sodium and potassium are two highly reactive metals that need to be handled with extreme caution. One common practice to ensure their safety is to store them in kerosene. But have you ever wondered why? Let’s dive into the reasons behind this storage method.

Safety First

When it comes to sodium and potassium, safety is of utmost importance. These metals are highly reactive and can easily react with moisture and oxygen in the air. Storing them in kerosene helps to keep them away from these elements, preventing any unwanted reactions.

Sodium and Potassium Stored in KeroseneBy immersing the metals in kerosene, a layer of the liquid forms a protective barrier between the metal and the surrounding air. This barrier prevents any contact between the metals and the moisture or oxygen in the environment.

Preventing Fires

Another significant reason for storing sodium and potassium in kerosene is to prevent fires. Both metals are highly reactive and can catch fire if exposed to air or water. This is due to their vigorous reaction with water, which produces hydrogen gas.

Sodium Metal Stored in KeroseneWhen sodium or potassium comes into contact with water, a highly exothermic reaction occurs, resulting in the release of hydrogen gas and a significant amount of heat. Storing these metals in kerosene ensures that there is no access to water, minimizing the risk of accidental fires.

Chemical Stability

Kerosene provides a stable environment for sodium and potassium. The liquid acts as a solvent, preventing any reactions between the metals and impurities present in the air.

Sodium and potassium readily react with substances such as nitrogen, carbon dioxide, and even trace amounts of moisture in the air. Storing them in kerosene eliminates the chances of these reactive elements coming into contact with the metals.

In conclusion, sodium and potassium are stored in kerosene primarily for safety reasons. The kerosene acts as a protective barrier, preventing the metals from reacting with moisture and oxygen in the environment. Storing them in this manner also minimizes the risk of fires that can occur due to their reaction with water. By considering these safety measures, we can handle these highly reactive metals with caution and ensure the well-being of everyone involved.

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