Ozone depletion is occurring in the upper atmosphere.
The atmosphere does not protect the ozone depletion. It is the region where the ozone depletion occurs.
No, ozone depletion was caused by CFCs in the atmosphere.
CFC's are the major cause of ozone depletion. They react with ozone molecule to decompose it.
Ozone layer is depletion is happening in the stratosphere of the earth's atmosphere. It is majorly concentrated over Antarctica's atmosphere.
Ozone depletion is depletion of ozone is in atmosphere. CFC gases which are pollutants are responsible for the depletion of ozone layer. CFC convert ozone to oxygen and make it useless for the absorption of UV radiation.
Ozone depletion means that there is less ozone than there was. We worry about ozone depletion in the upper atmosphere. At the surface, the less the better; it's poisonous.
Ozone depletion can cause:Skin cancerEye cataractSuppression of immune system.
No, sulfur dioxide is not responsible for ozone depletion. Ozone depletion is mainly caused by the release of chlorofluorocarbons (CFCs) and other ozone-depleting substances into the atmosphere, which break down ozone molecules in the stratosphere.
Depletion of ozone layer is dangerous. It is because it allows UV rays to enter the earth.
No, ozone depletion is mainly caused 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. Unburned hydrocarbons can contribute to air pollution and smog formation, but they do not directly cause ozone depletion.
The two main types of ozone depletion are natural ozone depletion and human-induced ozone depletion. Natural ozone depletion is caused by processes such as volcanic eruptions, while human-induced ozone depletion is primarily the result of the release of chlorofluorocarbons (CFCs) and other ozone-depleting substances into the atmosphere.
Ozone layer is depletion is happening in the stratosphere of the earth's atmosphere. It is majorly concentrated over Antarctica's atmosphere.