Detail the softening of water by ion-exchange exchange processes (cation andanion) with relevant chemical equations.
Question
Detail the softening of water by ion-exchange exchange processes (cation and anion) with relevant chemical equations.
Solution
The softening of water by ion-exchange processes involves two main steps: cation exchange and anion exchange.
- Cation Exchange: In this process, the positively charged ions (cations) in the water are replaced with other positively charged ions. The most common cation exchange process is the replacement of calcium and magnesium ions (which cause hardness in water) with sodium ions. This is done using a cation exchange resin, which is a substance that can selectively exchange ions with the water.
The chemical equation for this process is as follows:
2RNa + Ca2+ (in water) -> R2Ca + 2Na+ (in water)
Here, R represents the cation exchange resin. The calcium ions in the water (Ca2+) react with the sodium ions in the resin (RNa), resulting in the formation of a calcium-resin complex (R2Ca) and the release of sodium ions into the water (2Na+).
- Anion Exchange: In this process, the negatively charged ions (anions) in the water are replaced with other negatively charged ions. The most common anion exchange process is the replacement of bicarbonate, sulfate, and chloride ions with hydroxide ions. This is done using an anion exchange resin, which is a substance that can selectively exchange ions with the water.
The chemical equation for this process is as follows:
RCl + OH- (in water) -> ROH + Cl- (in water)
Here, R represents the anion exchange resin. The hydroxide ions in the water (OH-) react with the chloride ions in the resin (RCl), resulting in the formation of a hydroxide-resin complex (ROH) and the release of chloride ions into the water (Cl-).
These two processes together result in the softening of water, as the hardness-causing ions are replaced with softer ions.
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