What chemicals are in hot & cold packs?

Written by beverly shearer
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What chemicals are in hot & cold packs?
Chemical reactions cause heat and cold. (laboratory equipment image by Vasiliy Koval from Fotolia.com)

Hot and cold packs contain mixtures of chemicals that react together to create heat and cold. The chemicals in hot packs combine to cause exothermic reactions, while those in cold packs cause endothermic reactions. The majority of chemicals used in these packs are non-toxic and pose no threat to the environment. The exception is ammonium nitrate, which is not only toxic; it's potentially explosive.

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Single Use Hot Packs

The main chemical in single use hot packs is either calcium chloride or magnesium sulphate; the other ingredient is distilled water. Calcium chloride is a common salt that is often used to melt ice from roads and sidewalks. Calcium chloride isn't a food-grade salt, but it isn't toxic. High concentrations of calcium chloride can harm plants and trees near roadways. Magnesium sulphate is another salt compound. It's often used medically for soaking sore muscles and feet--Epsom salt is one example. It's also used as a bath salt and is found in some brands of bottled water.

Single Use Cold Packs

In single use cold packs, the chemical ammonium nitrate is used. Ammonium nitrate is toxic if ingested. It is a very dangerous chemical used in fertiliser and explosives. If a pack breaks open and the ammonium nitrate comes into contact with combustible materials it may explode. Cold packs also contain distilled water and when the inner linings are broken, the ammonium nitrate reacts to the water and causes an exothermic reaction.

"Dry" Heat Packs

The chemicals in "dry" hot packs are most often iron powder, activated carbon, vermiculite and salt. They can also contain wood powder and a small amount of water. The chemicals are harmless and most are found in nature. Activated carbon is merely processed charcoal and vermiculite is a natural mineral. These packs begin working after the chemicals are exposed to air.

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