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Group 2 elements (, , , ), also known as the alkaline earth metals, undergo reactions with water that follow a clear trend in reactivity as you move down the group. These reactions are important in understanding the redox behaviour of these metals and have practical uses, such as in industrial processes like the extraction of titanium. Let's explore the reactions and underlying principles.
The general reaction of Group 2 metals with water produces a metal hydroxide and hydrogen gas. The metal is oxidized from an oxidation state of 0 to +2 during the reaction.
Here, M represents any Group 2 metal. The hydroxides produced are alkaline, which is why these metals are termed "alkaline earth metals."
The reactivity of Group 2 metals with water increases as you move down the group.
This increase is explained by the decreasing ionization energy due to additional electron shells, greater shielding, and weaker nuclear attraction, making it easier for the metal to lose its outer electrons.
Reacts very slowly with cold water, but more vigorously with steam, forming magnesium oxide instead of hydroxide due to thermal decomposition at higher temperatures.
Reacts with cold water in an exothermic reaction. You will observe fizzing and the formation of calcium hydroxide, which is slightly soluble, producing a white precipitate.
Reacts more vigorously with cold water compared to calcium, producing strontium hydroxide and hydrogen gas in a highly exothermic reaction.
The most reactive of the Group 2 metals with water. It reacts violently with cold water, forming barium hydroxide and hydrogen gas.
As we move down Group 2, several factors explain the increase in reactivity:
Example Reaction: Magnesium and Titanium Extraction Magnesium plays a critical role in the extraction of titanium.
It is used as a reducing agent to reduce titanium(IV) chloride () to titanium metal in the following reaction:
This reaction is important for producing pure titanium, which is used in various industries such as aerospace and medicine.
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