These birds live by the sea. 

These birds live by the sea. 

Many of these birds have tubes on their noses. These tubes help them smell food in the water. They can find food by using their sense of smell.
These birds can drink salt water. They have a special part near their eyes. This part takes the salt out of their bodies. It drips out of their nose tubes.
Some birds like to nest in holes in the ground. Other birds nest on top of the land. They often stay with the same partner for a long time.
These birds can live for many years. One bird is about 75 years old! 
Procellariiformes are a group of seabirds. People often call them tubenoses. This name comes from the bony tubes on their bills. These tubes help them smell. Some birds use smell to find food in the ocean. Others use great vision to see.
These birds live in oceans all over the world. 

Most of these birds stay with one partner for life. They usually lay just one egg each year. Both parents help care for the chick. These birds can live for a long time. One bird named Wisdom is about 75 years old! 
These birds can drink salt water. They have a salt gland near their eyes. This gland takes the salt out of their blood. The salt then drips out of their nose tubes. 
Some birds, like the fulmar, use stomach oil for defense. They can spray this oil to keep enemies away.
Procellariiformes are a special group of seabirds found in oceans all over the world. 

These birds have amazing ways to survive at sea. They can even drink salt water to stay hydrated. 

Scientists have studied these birds for a long time. A German scientist named Max Fürbringer named the order in 1888. The name comes from a Latin word for a violent wind or storm. Earlier, people used different names for these families. One famous book about them was written by Frederick DuCane Godman between 1907 and 1910. Scientists now use genetics to see how these birds are related. They found that procellariiforms are most closely related to penguins. They split away from penguins about 60 million years ago.
There are 147 different species of these birds alive today. They are divided into four main families. The Diomedeidae are the large albatrosses with strong, hooked bills. The Oceanitidae are tiny storm petrels with weak legs. The Hydrobatidae are northern storm petrels with pointed wings. The Procellariidae include shearwaters and giant petrels. These birds can live for many decades. One famous bird named Wisdom is about 75 years old.
Watching these birds can feel like watching a dance. Some small storm petrels use a way of flying called pattering. They hold their bodies steady and move their feet across the water surface. 
Procellariiformes is an order of seabirds that live almost exclusively in the open ocean. 

These birds have specialized biological mechanisms to survive in salty environments. Because they drink seawater, they must excrete excess salt to stay hydrated. They possess an active salt gland located at the base of the bill. This gland removes salt from the system by using high levels of sodium ion reabsorption. This process happens within the kidneys to move sodium into the blood plasma. The salt gland then secretes sodium chloride using less water than was originally absorbed. This creates a 5 percent saline solution that drips from the nostrils. 
Procellariiformes also use unique methods to manage energy and defense. Most members, except for giant petrels, have weak legs and struggle on land. Many species only visit their breeding islands at night to avoid danger. Some birds, like the fulmar, produce a thick substance called stomach oil. This oil is a digestive residue stored in the proventriculus. It serves two main purposes: storing energy-rich food for long flights and acting as a defense. The fulmar can project this obnoxious oil some distance to disable large predatory birds. 
The order is divided into four distinct living families. The Diomedeidae, or albatrosses, are very large birds with strong, hooked bills. They have strong legs that allow them to walk well on land. The Oceanitidae, or austral storm petrels, are among the smallest seabirds. They have a fluttering flight style and long but weak legs. The Hydrobatidae, or northern storm petrels, have longer and more pointed wings. Most species in this family have forked tails. Finally, the Procellariidae include shearwaters and giant petrels. They are often heavy for their size and must fly fast due to high wing loading.
Scientific understanding of these birds has changed through many discoveries. The order was named in 1888 by the German anatomist Max Fürbringer. His name comes from the Latin word *procella*, meaning a violent storm. Historically, the classification of these birds was often different. For example, the Sibley-Ahlquist taxonomy incorrectly placed them in the order Ciconiiformes. Modern genetic studies have since proven that Procellariiformes are a monophyletic group. This means they are a natural grouping that shares a common ancestor.
Recent phylogenetic studies have clarified how these birds relate to others. Scientists have found that procellariiforms are most closely related to penguins. The two groups diverged from a common ancestor about 60 million years ago. Genetic data also helped reorganize the storm petrels. Previously, all storm petrels were in the family Hydrobatidae. However, researchers found that these birds consisted of two deeply divergent clades. This led to the creation of the new family Oceanitidae in 2018 for the austral storm petrels.
These birds exhibit remarkable lifespans and complex social behaviors. They are monogamous and form long-term pair bonds that can last a lifetime. Most species lay only one egg per nesting attempt each year. Large albatrosses may only nest once every two years. They show strong philopatry, meaning they return to their original birth colony to breed. They also return to the exact same nesting site over many years.
Flight is another area where these birds show amazing adaptations. Albatrosses and giant petrels use dynamic soaring and slope soaring to save energy. Albatrosses have a special sheet of tendon that locks their wings when fully extended. This allows them to keep their wings up without using any muscle effort. 
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