Planes can help farms. 

Planes can help farms from the sky. 

Planes can help farms from high in the sky. 

This work started a long time ago. In 1906, a man used a hot air balloon. He spread seeds over a wet valley. Later, people used planes to spread dust. This is how the name "crop dusting" began. 
Today, many special planes do this job. Some use big turbine engines. Some planes are even used to fight fires. These are called SEATs. They are single engine air tankers. Now, people also use drones. These are unmanned aerial vehicles. They help on small farms in Japan and South Korea. In the USA, they help in vineyards. 
Aerial application is a way to help farms from the sky. 

These planes are very special and built for a hard job. 
People have been doing this for a long time. In 1906, John Chaytor used a hot air balloon in New Zealand. He spread seed over a swamped valley floor. The first use of a plane happened on August 3, 1921. An engineer named Etienne Dormoy helped lead this work. A pilot named John A. Macready flew a Curtiss JN4 Jenny. They used it to spread lead arsenate near Troy, Ohio.
Commercial work began in 1924 in Macon, Georgia. 
New technology is changing how this work happens. Since the late 1990s, people use unmanned aerial vehicles, or UAVs. These are drones that fly without a person inside. This started in Japan and South Korea for small farms. In the USA, drones like the Yamaha R-MAX help in vineyards. However, some countries have strict rules about spraying. The European Union limited many sprays in 2009 to prevent spray drift. This helps keep the environment and people safe.
Aerial application is a specialized method of managing farmland from the sky. 
The mechanics of aerial application require highly specialized, purpose-built aircraft. 
There are several distinct types of aerial application tasks. One primary type is the sowing of seeds, which is still used today for rice planting and cover crops. Another major type is topdressing, which is the application of fertilizers over farmland. This specific practice was developed in New Zealand during the 1940s. It was then rapidly adopted by other nations throughout the 1950s. Additionally, the application of insecticides and fungicides is a common task. While early operators spread actual dust, modern applicators typically use liquid products in very small doses.
The history of this field began with unconventional methods. In 1906, John Chaytor performed the first known aerial application of agricultural materials. He used a hot air balloon with mobile tethers to spread seed over a swamped valley in Wairoa, New Zealand. The transition to heavier-than-air machines occurred on August 3, 1921. This development resulted from joint research by the U.S. Department of Agriculture and the U.S. Army Signal Corps. An engineer named Etienne Dormoy directed these early efforts at McCook Field in Ohio.
Detailed testing led to the first successful use of a modified Curtiss JN4 Jenny. 
Aircraft design has evolved significantly to meet these needs. In 1951, Leland Snow designed the S-1, the first aircraft built specifically for this work. Later, in 1957, the Grumman G-164 Ag-Cat became the first agricultural aircraft designed by a major company. Today, many different models are in use globally. These include the Air Tractor, the Cessna Ag-wagon, and the PZL-106 KRUK. Other common models are the M-18 Dromader, the Embraer EMB 202 Ipanema, and the Rockwell Thrush Commander. 
Technological shifts have introduced unmanned aerial vehicles, or UAVs, into the industry. Since the late 1990s, these drones have been used for agricultural spraying. This trend began in South Korea and Japan due to mountainous terrain. Small, family-owned farms there required higher precision and lower costs. Now, UAVs like the Yamaha R-MAX are expanding into the United States to spray vineyards. However, the industry must manage significant environmental and public health concerns. Organizations like the National Institute of Environmental Health Sciences monitor research on these chemicals. One specific concern involves the effects of mancozeb on pregnant women.
Regulatory bodies also play a major role in managing aerial application. Many countries have implemented bans or limits on these products since the 1970s. This is often done to prevent spray drift, which is the movement of chemicals through the air. Most notably, the European Union prohibited most aerial pesticide spraying in 2009. This was done through Directive 2009/128/EC to promote sustainable pesticide use. In the United States, the Environmental Protection Agency (EPA) provides guidelines and webinars. The U.S. Forest Service also manages impacts through environmental statements to protect endangered species.
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