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Sodium peroxide

physical science Maturity 11-13

This is a yellow solid.

Sodium peroxide 2grams.jpg
Sodium peroxide 2grams.jpg
It is made with air. It can help make paper. It even helps people in submarines. It can make the air we breathe. It is very useful. Do you like to learn about science?

42 words

This is a yellow solid.

Sodium peroxide 2grams.jpg
Sodium peroxide 2grams.jpg

It is made with a metal and air. This metal burns in the air. It makes the yellow stuff.

This stuff can help make paper. It was used to bleach wood pulp. Now, it is used in labs.

It is also very helpful for divers. It can work in scuba gear. It can even work in submarines.

This happens because it makes the air we breathe. It reacts with air to make oxygen.

It is a very useful thing to know.

91 words

Sodium peroxide is a yellow solid.

Sodium peroxide 2grams.jpg
Sodium peroxide 2grams.jpg
It is made by burning sodium in extra oxygen. Two men found it in 1810. Their names were Joseph Louis Gay-Lussac and Louis Jacques Thénard. Later, Hamilton Castner made it for work in the 1890s.

This substance can act as an oxidizing agent. This means it helps cause changes in other things. It is very useful for divers. It can be used in scuba gear and submarines. This happens because it can make oxygen. It does this by reacting with carbon dioxide.

Sodium-peroxide-unit-cell-3D-balls.png
Sodium-peroxide-unit-cell-3D-balls.png

In the past, people used it to bleach wood pulp. This helped make paper and cloth. Today, it is mostly used in labs. It helps scientists pull minerals from rocks.

Sodium peroxide can also hold water. We call these versions hydrates. One type is white. The plain version is yellow. If you heat it to 657 °C, it breaks down. It then lets out oxygen gas.

Sodium-peroxide-3D-vdW.png
Sodium-peroxide-3D-vdW.png

159 words

Sodium peroxide is a special yellow solid. It is an inorganic compound with the formula Na2O2. This material is a strong base. It can also exist as a white substance. This happens when it forms a hydrate. A hydrate is a version that holds water. One example is the octahydrate. This specific version is easy to prepare.

Sodium peroxide 2grams.jpg
Sodium peroxide 2grams.jpg

Making this substance happens in two steps. First, people ignite sodium in extra oxygen. This turns the sodium into sodium oxide. Next, they treat that oxide with even more oxygen. This second step creates the sodium peroxide. Another way involves using ozone gas. Scientists can pass ozone over solid sodium iodide. They do this inside a platinum or palladium tube. These metals help the reaction happen.

People discovered this substance a long time ago. Joseph Louis Gay-Lussac and Louis Jacques Thénard found it in 1810. Later, Hamilton Castner made it for work. He made it commercially in the 1890s. The substance has a unique shape. It forms crystals with hexagonal symmetry. If you heat it to 512 °C, the shape changes. This new shape has an unknown symmetry.

Sodium peroxide 2grams.jpg
Sodium peroxide 2grams.jpg

Sodium peroxide has many important uses. It can act as an oxidizing agent. This means it helps cause changes in other things. It was once used to bleach wood pulp. This helped make paper and textiles. Now, it is mostly used in labs. Scientists use it to pull minerals from ores. It also has commercial names like Solozone and Flocool.

One of its coolest jobs is making oxygen. It reacts with carbon dioxide to do this. This reaction creates oxygen and sodium carbonate. It can also make sodium bicarbonate. Because of this, it is useful for scuba gear. It is also helpful in submarines. If you heat it to 657 °C, it decomposes. This means it breaks down into sodium oxide. During this break down, it releases oxygen gas.

328 words

Sodium peroxide is an inorganic compound with the chemical formula Na2O2. It is a strong base and appears as a yellowish solid. This substance is important because of its unique chemical properties. It can act as an oxidizing agent in many different reactions. This means it helps drive chemical changes in other materials. Scientists also use it as a source of oxygen in specific environments.

Sodium peroxide 2grams.jpg
Sodium peroxide 2grams.jpg

To understand how this compound forms, we can look at its commercial production. This process usually happens in two distinct stages. First, sodium is oxidized to create sodium oxide. This occurs through the reaction: 4Na + O2 → 2 Na2O. In the second stage, this sodium oxide is treated with even more oxygen. This second reaction produces the final product: 2 Na2O + O2 → 2 Na2O2.

There are other ways to create sodium peroxide in a laboratory. One method involves passing ozone gas over solid sodium iodide. This reaction takes place inside a tube made of platinum or palladium. These specific metals act as a catalyst to help the reaction happen. A catalyst is something that speeds up a reaction without being used up. In this case, the platinum or palladium is not attacked by the sodium peroxide. The iodine can also be removed through a process called sublimation by using mild heat.

Sodium peroxide can also exist in several different forms called hydrates. A hydrate is a compound that contains water molecules within its structure. The substance can form several peroxyhydrates. These include Na2O2·2H2O2·4H2O, Na2O2·2H2O, and Na2O2·2H2O2. One specific version is the octahydrate, written as Na2O2·8H2O. Unlike the yellowish anhydrous material, this octahydrate is actually white.

Sodium peroxide 2grams.jpg
Sodium peroxide 2grams.jpg

The physical structure of the compound is also quite interesting. Sodium peroxide crystallizes with what is known as hexagonal symmetry. This refers to the repeating geometric shape of its crystal structure. If you heat the substance to 512 °C, it undergoes a phase transition. This means it changes into a new form with a symmetry that is currently unknown. If the heat increases to its boiling point of 657 °C, the compound decomposes. During decomposition, it breaks down into sodium oxide and releases oxygen gas.

History shows us how our understanding of this chemical has grown. Joseph Louis Gay-Lussac and Louis Jacques Thénard discovered the substance in 1810. They used the method of oxidizing sodium with oxygen. Later, in the 1890s, Hamilton Castner found a way to produce it commercially. This allowed the substance to be used on a much larger scale.

Today, sodium peroxide serves many important roles in industry and science. It was once used on a large scale to produce sodium perborate. However, scientists have since developed alternative ways to make that cleaning agent. In the past, it was also used to bleach wood pulp for textiles and paper. Now, it is mainly used for specialized laboratory tasks. For example, it helps in the extraction of minerals from various ores. It is also sold under commercial names like Solozone and Flocool.

Sodium peroxide 2grams.jpg
Sodium peroxide 2grams.jpg

One of its most vital uses is in life-support systems. Sodium peroxide can react with carbon dioxide to produce oxygen. One reaction produces oxygen and sodium carbonate: Na2O2 + CO2 → Na2CO3 + 1⁄2 O2. Another reaction involving water produces sodium bicarbonate: Na2O2 + H2O + 2 CO2 → 2 NaHCO3 + 1⁄2 O2. Because it can generate oxygen from carbon dioxide, it is very useful in submarines and scuba gear. Other chemicals, like lithium peroxide and potassium superoxide, are used for similar purposes.

600 words
🖼️ Images & Media (7)
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File:NFPA 704.svg
NFPA 704.svg
File:Sodium-peroxide-3D-vdW.png
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File:Sodium-peroxide-unit-cell-3D-balls.png
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File:Sodium peroxide 2grams.jpg
Sodium peroxide 2grams.jpg
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