This is a type of plastic. 
This is a type of plastic. 

Heat makes the plastic soft. It can flow like a liquid. When it cools, it gets hard again. This helps people shape it.
People use it for many things. You might see it in cups. It is used for trays and lids. It is even used for toys.
This plastic does not break down easily. It can become litter in the sea. This is bad for the water.
Some tiny bugs can eat the foam. Mealworms can eat it to stay healthy. This is very interesting!
Polystyrene is a common type of plastic. 
Polystyrene can be hard or soft. Some is clear and brittle, like a CD case. 

Heat changes how the plastic acts. It is a thermoplastic, which means it melts when heated. It flows well above 100 °C. This helps makers shape it into cups or trays. Once it cools, it becomes hard again.
This plastic does not break down easily in nature. It can become litter in the ocean. However, some living things can help. Mealworms can eat the white foam.
Polystyrene is a very common type of plastic used all over the world. 

Making polystyrene involves a way of working called polymerization.
People have been studying this material for a long time. An apothecary named Eduard Simon first discovered it in 1839 in Berlin. He found an oily substance from a tree that he named styrol. Later, in 1845, chemists John Buddle Blyth and August Wilhelm von Hofmann found it could change without oxygen. In 1866, Marcellin Berthelot correctly identified that this was a polymerization process.
Polystyrene has many different forms and uses. General-purpose polystyrene is clear and hard, like a CD case. 


It is important to know how polystyrene acts in the environment. It is a thermoplastic, meaning it melts when heated above 100 °C. 
Polystyrene is a highly versatile synthetic polymer used in many parts of modern life. 
The chemical structure of polystyrene is a long hydrocarbon chain.
The physical properties of the plastic depend heavily on how these molecular chains are arranged. This arrangement is known as tacticity.
Polystyrene is classified as a thermoplastic. This means it has a glass transition temperature, which is the point where it changes from a hard, glassy state to a soft, flowing state. For standard polystyrene, this happens at approximately 90 °C. When heated above about 100 °C, the material becomes pliable. This allows manufacturers to use processes like extrusion, molding, or vacuum forming to create specific shapes. 
The history of polystyrene began with accidental discoveries in the 19th century. In 1839, an apothecary in Berlin named Eduard Simon distilled an oily substance from the resin of the Oriental sweetgum tree. He named this substance styrol.
Today, polystyrene exists in several distinct forms used for different purposes. General-purpose polystyrene is clear, hard, and brittle. 



Despite its usefulness, polystyrene presents significant environmental challenges. It is considered non-biodegradable under ASTM standards, meaning it does not break down naturally in the environment. It often accumulates as litter along shores, in waterways, and in the Pacific Ocean. While it is resistant to many acids and bases, it can be dissolved by organic solvents like acetone. Interestingly, some living organisms show potential for helping with waste. In 2015, researchers found that mealworms could digest expanded polystyrene.
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