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The chemicals that breakdown ozone are divided into classes. CFC's are the main ones that destroy it.

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What are 3 chemicals that can cause ozone molecules to break down in the ozone layer?

Chlorofluorocarbons (CFCs), hydrochlorofluorocarbons (HCFCs), and halons are three chemicals that can cause ozone molecules to break down in the ozone layer. These chemicals release chlorine and bromine atoms when they reach the stratosphere, which can then catalyze the breakdown of ozone molecules.


What do chemicals released into the atmosphere break ozone down into to?

Chemicals released into the atmosphere, such as chlorofluorocarbons (CFCs), break ozone down into oxygen molecules and chlorine atoms through a series of chemical reactions. The chlorine atoms then react with ozone molecules, leading to the depletion of the ozone layer.


Which class ofchemical is linked to the decrease in the amount of ozone in the upper atmosphere of the earth?

Chlorofluorocarbons (CFCs) are the main class of chemicals linked to the decrease in the amount of ozone in the upper atmosphere of the earth. When CFCs are released into the atmosphere, they break down and release chlorine, which then contributes to the destruction of ozone molecules.


What depletes ozone in stratosphere?

Chemicals such as chlorofluorocarbons (CFCs) and other ozone-depleting substances released into the atmosphere can break down ozone molecules in the stratosphere. These chemicals react with ozone, causing it to break apart and reduce the overall levels of ozone in that layer of the atmosphere.


What type of chemicals are responsible for ozone deplenation?

Chlorofluorocarbons (CFCs), hydrochlorofluorocarbons (HCFCs), and other halogenated compounds containing chlorine and bromine are the primary chemicals responsible for ozone depletion in the stratosphere. These chemicals break down ozone molecules when they reach the ozone layer, causing a reduction in the protective ozone shield.


What produced the ozone hole?

The ozone hole was primarily produced by the release of man-made chemicals called chlorofluorocarbons (CFCs) into the atmosphere. These chemicals break down ozone molecules in the stratosphere, leading to the thinning of the ozone layer.


Which chemicals are dangerous to the ozone layer?

Chlorofluorocarbons (CFCs), hydrochlorofluorocarbons (HCFCs), halons, and methyl bromide are chemicals that are known to be dangerous to the ozone layer. These substances contain chlorine and bromine atoms that can break down ozone molecules when released into the atmosphere.


Gases will react with the ozone layer and break it down?

CFC's are the gases that react with ozone to break it down. They deplete the ozone.


Why is there a hole in the ozone layer?

The hole in the ozone layer is primarily caused by human activities releasing chemicals called chlorofluorocarbons (CFCs) into the atmosphere. These CFCs break down ozone molecules, leading to the thinning of the ozone layer.


Why ozone layer is thinnning?

The ozone layer is thinning due to the release of man-made chemicals called chlorofluorocarbons (CFCs) and halons. These chemicals break down ozone molecules in the atmosphere, leading to a decrease in ozone concentration in the stratosphere. This thinning of the ozone layer allows more harmful ultraviolet (UV) radiation to reach the Earth's surface, posing risks to human health and the environment.


Which one of the chemicals is responsible for the reduction of ozone layer in the atmosphere?

Chlorofluorocarbons (CFCs) are primarily responsible for the reduction of the ozone layer in the atmosphere. When CFCs are released into the atmosphere, they can break down ozone molecules, leading to the thinning of the ozone layer.


What human-made chemicals cause the ozone to deplete?

Chlorofluorocarbons (CFCs), halons, and certain types of hydrochlorofluorocarbons (HCFCs) are human-made chemicals that cause ozone depletion. When these substances are released into the atmosphere, they break down and release chlorine and bromine atoms, which then destroy ozone molecules in the stratosphere.