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Magnesium chloride

physical science Maturity 7-9

This is a special kind of salt.

Sea salt-e-dp hg.svg
Sea salt-e-dp hg.svg
It can come from the sea. We use it to melt ice on roads. It even helps make tofu food. It is very useful! Can you find salt in your kitchen?

41 words

This is a special kind of salt.

Sea salt-e-dp hg.svg
Sea salt-e-dp hg.svg
It can be found in sea water. People also get it from big lakes. It looks like white or clear solids.
Snow-removal-cleveland-1.jpg
Snow-removal-cleveland-1.jpg
This salt helps melt ice on roads. It keeps paths safe for people. It can even help make tofu food. This salt is very useful in our world!

60 words

Magnesium chloride is a special kind of salt. It can be a white or clear solid. This salt loves water. It can even pull moisture from the air. This makes the solid turn into a liquid.

Sea salt-e-dp hg.svg
Sea salt-e-dp hg.svg

We find this salt in nature. It is in sea water. It is also in big lakes. Some people get it from the Dead Sea. They can also find it in the Great Salt Lake.

Snow-removal-cleveland-1.jpg
Snow-removal-cleveland-1.jpg

People use this salt for many jobs. It helps melt ice on roads. This keeps paths safe for cars and people. It is used to stop dust on roads too. In food, it helps make tofu from soy milk. In Japan, a version called nigari is used for this.

Farmers use it to help plants grow. It gives plants magnesium. This is a nutrient that plants need. But people must be careful. Too much salt can hurt a plant. It can even kill a tree. We must use just the right amount.

167 words

Magnesium chloride is a very useful salt. It is a white or colorless solid. This salt is highly soluble in water. This means it dissolves very easily. It can even pull moisture from the air. This process is called deliquescence. When this happens, the solid turns into a liquid.

Sea salt-e-dp hg.svg
Sea salt-e-dp hg.svg
This salt is important for many different jobs. It helps make metal and helps food stay firm. It even keeps roads safe in winter.

There are many ways to get this salt. It can be extracted from sea water or brine. In North America and South America, people get it from the Great Salt Lake. In the Jordan Valley, it comes from the Dead Sea. Some people use a mineral called bischofite. This mineral comes from ancient seabeds like the Zechstein seabed in Europe.

Sea salt-e-dp hg.svg
Sea salt-e-dp hg.svg
You can also make it by evaporating sea water. Another way is by using a chemical reaction with magnesium hydroxide and hydrochloric acid.

This salt is the main precursor to magnesium metal. A precursor is something used to make something else. To make the metal, scientists use a process called electrolysis. They do this in molten salt. They cannot use water for this part. If they used water, the magnesium would react with it immediately. Instead, they use heat to melt the salt first.

Snow-removal-cleveland-1.jpg
Snow-removal-cleveland-1.jpg
This allows them to produce magnesium on a very large scale.

Magnesium chloride has many practical uses in our world. It is used for dust control and to stop wind erosion. It is also great for ice control on highways. Workers use it in three ways: anti-icing, prewetting, and pretreating.

Snow-removal-cleveland-1.jpg
Snow-removal-cleveland-1.jpg
It is safer for concrete than calcium chloride. In the kitchen, it is used to make tofu. In Japan, it is called nigari. In China, it is known as lushui.
Snow-removal-cleveland-1.jpg
Snow-removal-cleveland-1.jpg

Living things use magnesium chloride in many ways. Plants need magnesium to grow well. Farmers can use it to help plants that lack this nutrient. However, they must use a small amount. Too much chloride can be toxic to a plant. It can even cause a tree to die.

Sea salt-e-dp hg.svg
Sea salt-e-dp hg.svg
In humans, the salt can taste very bitter. Most healthy people can eat it without trouble. This is because the kidneys help remove extra magnesium through urine.

385 words

Magnesium chloride is an inorganic compound with the chemical formula MgCl2. It is a vital substance used in many different industries and natural processes. This compound often exists as a colorless or white solid. It is highly soluble, meaning it dissolves very easily in water. A unique property of magnesium chloride is its deliquescence. This is a process where the solid attracts moisture from the air. Eventually, the salt absorbs so much water that it turns into a liquid.

Sea salt-e-dp hg.svg
Sea salt-e-dp hg.svg

Magnesium chloride exists in many different forms called hydrates. A hydrate is a compound that contains water molecules within its structure. The number of water molecules, represented by the letter n, can range from 1 to 12. These hydrates lose water at different temperatures when they are heated. For example, the dodecahydrate loses water at −16.4 °C. The hexahydrate loses water at 116.7 °C. The dihydrate loses its water at about 300 °C. In its hexahydrate form, the magnesium ion is coordinated to six water ligands. This means the water molecules are chemically bonded to the magnesium center in an octahedral shape.

There are several ways to produce and extract magnesium chloride. It can be taken from brine or seawater through evaporation. In North America and South America, it is often obtained from the Great Salt Lake. In the Jordan Valley, it is sourced from the Dead Sea. The Dead Sea is notable because it contains a very high magnesium chloride ratio of 50.8%. Another method involves extracting a mineral called bischofite from ancient seabeds. An example of such a seabed is the Zechstein seabed in northwest Europe. Scientists can also regenerate the compound using a chemical reaction. They can react magnesium hydroxide with hydrochloric acid to create it.

One of the most important industrial uses is as a precursor to magnesium metal. A precursor is a starting material used to make a final product. To create the metal, engineers use a process called electrolysis. This involves passing an electric current through molten salt. This must be done in molten salt rather than an aqueous solution. If water were present, the magnesium would react with the water immediately. Instead, the electrolysis produces metallic magnesium at the cathode. At the same time, chloride anions are oxidized at the anode to release chlorine gas.

Magnesium chloride is also widely used for road safety and environmental control. It is a common agent for dust control and soil stabilization. It helps prevent wind erosion on bare soil. In winter, it is essential for ice control on highways and sidewalks. Road workers use it in three specific ways: anti-icing, prewetting, and pretreating. Anti-icing prevents snow from sticking to the pavement. Prewetting involves spraying a liquid formulation onto salt before it is spread. Pretreating means mixing the magnesium chloride and salt together before they are loaded onto trucks.

Snow-removal-cleveland-1.jpg
Snow-removal-cleveland-1.jpg
It is often preferred over calcium chloride because it damages concrete much more slowly.

In the world of food and medicine, this compound plays a fascinating role. It is used as a coagulant to make tofu from soy milk. In Japan, this substance is known as nigari, which comes from seawater. In China, it is called lushui. These natural forms are not completely refined and contain other minerals. Magnesium chloride is also used in pharmaceutical preparations and as an electrolyte. In gardening, it serves as a source of magnesium for plants. This is often done through foliar feeding, which means applying the nutrient directly to the leaves. However, users must be careful because too much chloride can become toxic to the plant.

Finally, magnesium chloride is important for managing waste and supporting ecosystems. It is used in wastewater treatment to help remove phosphorus. This is done by helping phosphorus precipitate into a form called struvite. In the ocean, magnesium levels are typically between 1250 and 1350 mg/L. This represents about 3.7% of the total mineral content in seawater. Magnesium is a key part of the environment for many sea creatures. It is essential for the growth of corals, clams, and various invertebrates. Understanding how this salt moves through water and soil helps scientists protect these delicate natural systems.

Sea salt-e-dp hg.svg
Sea salt-e-dp hg.svg

696 words
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File:Snow-removal-cleveland-1.jpg
Snow-removal-cleveland-1.jpg
File:Sea salt-e-dp hg.svg
Sea salt-e-dp hg.svg
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