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Fertilizer

language culture Maturity 9-11 Vital Level 3 climate
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Plants need food to grow.

Manure spreading Hlokozi 2007 11 29.jpg
Manure spreading Hlokozi 2007 11 29.jpg
This food is called fertilizer. It goes into the soil. It helps plants stay strong. It helps us grow more food.
Reuse of urine demonstration - fertilised and not fertilised tomato plant experiment (3617543234).jpg
Reuse of urine demonstration - fertilised and not fertilised tomato plant experiment (3617543234).jpg
Do you like to garden?

50 words

Plants need food to grow.

Manure spreading Hlokozi 2007 11 29.jpg
Manure spreading Hlokozi 2007 11 29.jpg
This food is called fertilizer. It goes into the soil. It helps plants stay strong.
Reuse of urine demonstration - fertilised and not fertilised tomato plant experiment (3617543234).jpg
Reuse of urine demonstration - fertilised and not fertilised tomato plant experiment (3617543234).jpg
Some fertilizer comes from nature. It can be animal manure. It can also be compost. Other kinds are made in factories. These help grow much more food. This helps feed many people on Earth. Using fertilizer helps plants grow big and healthy.

81 words

Plants need nutrients to grow well. We add these nutrients to soil using fertilizer.

Manure spreading Hlokozi 2007 11 29.jpg
Manure spreading Hlokozi 2007 11 29.jpg
There are two main kinds of fertilizer. Organic fertilizers come from nature. These include compost or animal manure.
HomeComposting Roubaix Fr59.JPG
HomeComposting Roubaix Fr59.JPG
Other kinds are called inorganic or synthetic fertilizers. These are made in factories using chemical steps.

Most farmers focus on three main nutrients. We call these NPK. Nitrogen (N) helps leaves and stems grow. Phosphorus (P) helps roots, flowers, and seeds. Potassium (K) helps stems stay strong.

NPK 19-19-19 Fertilizer (4).jpg
NPK 19-19-19 Fertilizer (4).jpg

Using these tools helps grow a lot of food. In fact, synthetic nitrogen helps feed nearly half of all people on Earth.

World population supported by synthetic nitrogen fertilizers, OWID.svg
World population supported by synthetic nitrogen fertilizers, OWID.svg
However, using too much can cause problems. It can lead to water pollution. This happens when nutrients wash away into rivers and seas. This can cause algal blooms. To help the Earth, farmers use careful ways to plant. They might use buffer strips of plants to stop runoff.

175 words

Fertilizer is any material used to give nutrients to soil or plant tissues.

Manure spreading Hlokozi 2007 11 29.jpg
Manure spreading Hlokozi 2007 11 29.jpg
These materials help plants grow much better than they would alone. People use fertilizer to make sure crops stay healthy and strong. It is a very important tool for feeding people around the world. Some fertilizers are organic, meaning they come from natural things like compost or animal manure.
HomeComposting Roubaix Fr59.JPG
HomeComposting Roubaix Fr59.JPG
Other types are inorganic, which are made in factories using chemical processes.

Most modern farming focuses on three main nutrients known as NPK.

NPK 19-19-19 Fertilizer (4).jpg
NPK 19-19-19 Fertilizer (4).jpg
Nitrogen (N) is vital for growing healthy leaves and stems. Phosphorus (P) helps a plant develop its roots, flowers, seeds, and fruit. Potassium (K) helps stems grow strong and moves water through the plant. Plants also need secondary nutrients like calcium, magnesium, and sulfur. They even need tiny amounts of micronutrients like iron, zinc, and boron.
Reuse of urine demonstration - fertilised and not fertilised tomato plant experiment (3617543234).jpg
Reuse of urine demonstration - fertilised and not fertilised tomato plant experiment (3617543234).jpg

Farmers have managed soil fertility since the very beginning of agriculture.

Manure spreading Hlokozi 2007 11 29.jpg
Manure spreading Hlokozi 2007 11 29.jpg
Early groups in the Middle East, China, and the Andes used it to grow. Egyptians, Romans, and Babylonians also used minerals or manure to help crops. In 1837, an Englishman named John Bennet Lawes began experimenting with manures. He patented a way to make artificial manure in 1842 using phosphates. This helped start the large industry for chemical fertilizers we see today.

In the 20th century, new science changed how we make nitrogen.

Total fertilizer production by nutrient, OWID.svg
Total fertilizer production by nutrient, OWID.svg
The Haber process makes ammonia from natural gas and nitrogen from the air. This discovery helped food production grow very quickly during the Green Revolution. In 2021, Asia used 53% of the world's inorganic fertilizers. China was the largest user of each nutrient in the world. It is estimated that synthetic nitrogen helps feed nearly half of the global population.
World population supported by synthetic nitrogen fertilizers, OWID.svg
World population supported by synthetic nitrogen fertilizers, OWID.svg

While fertilizer helps us grow food, it can also affect nature. If farmers use too much, the extra nutrients can wash away. This is called nutrient runoff, and it can pollute rivers and seas. This can lead to eutrophication, which causes large algal blooms in the water. Making these fertilizers also creates emissions like carbon. To help, farmers use sustainable ways like planting buffer strips to stop runoff.

Aquatic Dead Zones.jpg
Aquatic Dead Zones.jpg

407 words

Fertilizer is any material applied to soil or plant tissues to supply essential nutrients.

Manure spreading Hlokozi 2007 11 29.jpg
Manure spreading Hlokozi 2007 11 29.jpg
These materials are vital for supporting plant life and increasing agricultural productivity. Fertilizers can be of natural or synthetic origin. They are often distinguished from liming materials, which are non-nutrient soil amendments. By providing specific elements, fertilizers allow crops to grow more efficiently. This process is a cornerstone of modern global food systems.

Most modern agriculture focuses on three primary macronutrients known as NPK.

NPK 19-19-19 Fertilizer (4).jpg
NPK 19-19-19 Fertilizer (4).jpg
Nitrogen (N) is essential for the growth of leaves and stems. Phosphorus (P) supports the development of roots, flowers, seeds, and fruit. Potassium (K) promotes strong stem growth and the movement of water within the plant. Plants also require secondary macronutrients, including calcium (Ca), magnesium (Mg), and sulfur (S). Additionally, they need micronutrients like iron (Fe), zinc (Zn), and boron (B) in smaller amounts.
Reuse of urine demonstration - fertilised and not fertilised tomato plant experiment (3617543234).jpg
Reuse of urine demonstration - fertilised and not fertilised tomato plant experiment (3617543234).jpg

Fertilizers are classified into several distinct categories based on their composition and origin. Organic fertilizers are derived from recycled plant or animal matter, such as compost or manure.

HomeComposting Roubaix Fr59.JPG
HomeComposting Roubaix Fr59.JPG
Inorganic fertilizers are often called synthetic fertilizers because they require chemical manufacturing. These are typically made from minerals or industrial processes. Fertilizers can also be "straight," meaning they provide only a single nutrient. Conversely, "complex" or multinutrient fertilizers provide two or more nutrients at once. This variety allows farmers to tailor applications to specific crop needs.

Managing soil fertility has been a priority since the dawn of agriculture. Early societies in the Middle East, China, and the Andes used natural methods to enhance crops. Egyptians, Romans, and Babylonians also utilized minerals and manure to increase yields. In 1837, John Bennet Lawes began experimenting with manures in pots. By 1842, he patented a process using phosphates and sulfuric acid. This invention helped launch the first artificial manure industry.

Instalaciones MIRAT S.A. Salamanca.JPG
Instalaciones MIRAT S.A. Salamanca.JPG

The 20th century brought massive changes through chemical innovations. The Haber process produces ammonia (NH3) using methane and nitrogen from the air.

Total fertilizer production by nutrient, OWID.svg
Total fertilizer production by nutrient, OWID.svg
This ammonia can then be converted into nitric acid through the Ostwald process. These breakthroughs allowed for the large-scale production of nitrogen fertilizers. This helped drive the "Green Revolution," which increased global food productivity. It is estimated that synthetic nitrogen fertilizer supports nearly half of the world's population.
World population supported by synthetic nitrogen fertilizers, OWID.svg
World population supported by synthetic nitrogen fertilizers, OWID.svg

Global fertilizer use is distributed unevenly across different regions. In 2021, Asia accounted for 53% of the world's total agricultural inorganic fertilizer use. The Americas used 29%, followed by Europe at 12%, Africa at 4%, and Oceania at 2%.

Inorganic fertilizer use by region-.svg
Inorganic fertilizer use by region-.svg
Within these regions, China, India, Brazil, and the United States are the largest users. China stands as the largest user of each individual nutrient. The scale of production is immense, with nitrogen use rising nearly 20-fold between 1961 and 2019. In 2003 alone, nitrogen use reached a rate of 100 million tonnes per year.

While fertilizers are necessary for food, they can cause environmental challenges. Excessive application can lead to nutrient runoff, where fertilizers wash into water bodies. This process can cause eutrophication, which leads to harmful algal blooms. Such blooms can create aquatic dead zones in rivers and seas.

Aquatic Dead Zones.jpg
Aquatic Dead Zones.jpg
Furthermore, the chemical production of fertilizers results in carbon and other emissions. Some fertilizers may also contain heavy metals from mining processes. To mitigate these effects, farmers use sustainable practices like planting buffer strips to catch runoff.

600 words
🖼️ Images & Media (26)
File:Manure spreading Hlokozi 2007 11 29.jpg
Manure spreading Hlokozi 2007 11 29.jpg
Fertilization (JOKAMT2Pe14-1).tif
File:Total fertilizer production by nutrient, OWID.svg
Total fertilizer production by nutrient, OWID.svg
File:World population supported by synthetic nitrogen fertilizers, OWID.svg
World population supported by synthetic...
File:Instalaciones MIRAT S.A. Salamanca.JPG
Instalaciones MIRAT S.A. Salamanca.JPG
File:Cropland nitrogen balance by component and region.svg
Cropland nitrogen balance by component...
File:Reuse of urine demonstration - fertilised and not fertilised tomato plant experiment (3617543234).jpg
Reuse of urine demonstration - fertilised...
File:Inorganic fertilizer use by region-.svg
Inorganic fertilizer use by region-.svg
File:Nitrogen fertilizer consumption, OWID.svg
Nitrogen fertilizer consumption, OWID.svg
File:Siilinjärvi Särkijärvi pit.jpg
Siilinjärvi Särkijärvi pit.jpg
File:NPK 19-19-19 Fertilizer in 1 KG Commercial Packing (2).jpg
NPK 19-19-19 Fertilizer in 1 KG...
File:NPK 19-19-19 Fertilizer (4).jpg
NPK 19-19-19 Fertilizer (4).jpg

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