Some clouds live very high up. 

Some clouds live very high up. 
One type of cloud is made of ice. These look like bright pearls. They shine with many colors.
Another type is made of liquid drops. These drops can harm the air layer above us.
These clouds are high in the sky. The sun shines on them from below. This makes them glow at dawn or dusk. 
Some clouds form very high in the sky. They live in the stratosphere. This layer is usually very dry. It rarely has clouds. 

There are two main types of these clouds. One type is made of ice crystals. These are called nacreous clouds. They look like mother of pearl. They shine with many bright colors. These clouds are not harmful.
The other type is made of liquid drops. These drops contain water and acids. This type can help make holes in the ozone layer. This happens because the clouds help chemical changes. These changes make active chlorine. The chlorine then destroys ozone. 
Because these clouds are so high, they catch sunlight. The sun stays below the horizon. The light hits the clouds from below. This makes them glow brightly. You can see them at dawn or dusk. In the north, mountains can help make them. These look like lens shapes.
High in the sky, special clouds can form. These are called polar stratospheric clouds. They live in the stratosphere. This layer of our air is usually very dry. It rarely has clouds at all. 

These clouds form when it gets extremely cold. The temperature must drop below -78 degrees Celsius. 
Scientists group these clouds into two main types. Type I clouds are made of liquid droplets. These droplets contain water and nitric acid or sulfuric acid. 
Type I clouds can be a problem for our planet. They help create ozone holes. This happens through a specific way it works. The clouds support chemical reactions. These reactions produce active chlorine. This chlorine then destroys the ozone layer. 
Because these clouds are so high, they look amazing. They catch sunlight from below the horizon. You can see them during civil twilight. This is when the sun is between 1 and 6 degrees below the horizon. 
Polar stratospheric clouds, often called PSCs, are unique clouds that form in the stratosphere. This layer of the atmosphere is usually very dry. Because it lacks moisture, clouds rarely form there. However, during the extreme cold of polar winters, these special clouds appear. They exist at very high altitudes. They are important because they affect the chemistry of our atmosphere. 
These clouds form only when temperatures drop below -78 degrees Celsius. Such intense cold is common in the Antarctic winter. In the Arctic, these extremely low temperatures are much rarer. The formation process depends on the chemical makeup of the air. Some clouds form from supercooled liquid droplets. Others form from pure ice crystals. 
Scientists classify these clouds into two primary categories. The first category is Type I clouds. These clouds have a stratiform appearance. This means they look like flat layers or haze. Type I clouds are made of water, nitric acid, and sometimes sulfuric acid. They are further divided into three specific subtypes. Type Ia clouds contain large, aspherical particles of nitric acid trihydrate, or NAT. Type Ib clouds consist of small, spherical liquid droplets. These are a supercooled ternary solution of sulfuric acid, nitric acid, and water. Finally, Type Ic clouds consist of metastable, water-rich nitric acid in a solid phase. 
The second category is Type II clouds. These consist entirely of water ice crystals. They often have cirriform or lenticular shapes. Lenticular clouds are lens-shaped. In the Arctic, Type II clouds are very rarely seen. In the Antarctic, they occur more frequently. Type II clouds are also known as nacreous clouds. This name comes from the word nacre, which means mother of pearl.
Type I clouds play a significant role in ozone depletion. They facilitate chemical reactions that produce active chlorine. This active chlorine acts as a catalyst to destroy ozone molecules. The clouds also remove gaseous nitric acid from the air. This removal perturbs the natural cycles of nitrogen and chlorine. These changes increase the rate of ozone destruction. Type II clouds are not considered harmful to the ozone layer. 
Because of their high altitude, PSCs are visible during civil twilight. This is the period when the Sun is between 1 and 6 degrees below the horizon. The curvature of the Earth allows these clouds to catch sunlight from below the horizon. They reflect this light down to the ground. This makes them shine brightly after dusk or before dawn. They often show beautiful iridescence. This is a pearly, rainbow-like color caused by the diffraction of light. 
In the Northern Hemisphere, geography can influence cloud shapes. Mountains can generate lee waves in the atmosphere. These waves can locally cool the lower stratosphere. This cooling can lead to the formation of lenticular PSCs. Scientists use a technique called LIDAR to study these clouds. LIDAR helps them measure the height and temperature of the cloud. It can also determine the chemical composition of the particles. This helps researchers understand the complex systems of our atmosphere. 
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