Guano is bird and bat poop. 

Guano is bird and bat poop. 


Guano is the waste left by seabirds and bats. 

In the 1800s, people wanted guano more than ever. This was called the Guano Age. Many countries fought to control islands with big piles of it. Some people even used it to make gunpowder. 
Guano also helps life inside caves. Many cave animals rely on bat guano for food. Without it, some species might disappear.
Scientists also study old guano. It can tell us about the past. For example, it holds pollen from old plants. This helps us see what grew long ago.
Guano is the waste left behind by seabirds and bats. 


Guano works by providing food for plants and ecosystems. In the ocean, birds like the guanay cormorant make huge piles of waste. These piles provide nutrients for farming. In caves, bat guano provides food for many living things. Bacteria, fungi, and small animals all rely on these nutrients to survive. If bats leave a cave, the species that eat the guano might disappear. This shows how one small thing can support a whole world.
People have used guano for a very long time. Andean people in Peru collected it from islands for 5,000 years.
During the Guano Age, many countries wanted to control it. 
Today, the way we use guano has changed. After 1910, scientists found a way to make nitrogen from the air. This is called the Haber–Bosch process. Because of this, people do not need as much guano for farms. However, guano is becoming popular again for organic food. 
Guano refers to the accumulated excrement of seabirds or bats. 

The chemical makeup of guano depends on its source. Seabird guano is fecal excrement from marine birds. It contains organic matter greater than 40%. It is a primary source of nitrogen (N) and available phosphate (P2O5). Bat guano is also composed of more than 40% organic matter. In insectivorous bats, the guano contains fine particles of insect exoskeletons. These exoskeletons are largely made of chitin. 
Different species play specific roles in producing these deposits. The guanay cormorant has historically been the most important producer of seabird guano. 

Humans have utilized guano for thousands of years. The word itself comes from the Andean Quechua language. Archaeological evidence shows Andean people used seabird guano for 5,000 years. The Inca Empire valued guano highly and restricted access to it. They even punished anyone who disturbed the birds with death. European records of guano use date back to 1548. However, it did not become popular in Europe until the 19th century. In 1802, Alexander von Humboldt investigated its properties in Peru. His writings made the subject famous throughout Europe.
The 19th century is often called the Guano Age, spanning from 1802 to 1884. During this time, guano became a massive global commodity. In 1813, chemist Humphry Davy published a bestselling book on nitrogenous manure. He highlighted how Peruvian guano could make sterile plains fruitful. By 1840, the Peruvian government nationalized its guano resources. This allowed the state to collect royalties, which became its largest source of revenue. This income helped the state free 25,000 black slaves and abolish the head tax on Indians. 
Global competition for guano led to intense political conflict. The United States passed the Guano Islands Act in 1856. This allowed U.S. citizens to claim uninhabited islands to mine guano. This act helped form the legal foundation for the U.S. empire. In South America, the War of the Pacific (1879–1883) was fought over guano and saltpetre.
The demand for guano declined rapidly after 1910. This change happened because of the Haber–Bosch process. This chemical process allows for the large-scale synthesis of ammonia from the atmosphere. Because farmers could now use artificial fertilizers, the guano trade faded. However, guano is seeing a resurgence today due to the popularity of organic food. In Chile, guano production continues, ranging from 2,091 to 4,601 metric tons per year between 2014 and 2023. Scientists also use guano for paleoenvironment reconstruction. By studying pollen and nitrogen isotopes in old guano, they can determine past rainfall and plant life.
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