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Biogeochemistry

life science Maturity 9-11

Nature moves in big circles.

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Cyanobacteria-mats-dominated-by-Anabaena-sp.jpg
Things like air and water move around. They go from the ground to living things. Then they move back again. This helps our world stay healthy. It is like a big loop. Can you see how things move?

44 words

Nature moves in big loops.

Cyanobacteria-mats-dominated-by-Anabaena-sp.jpg
Cyanobacteria-mats-dominated-by-Anabaena-sp.jpg
These loops move things like air and water. They move from the ground to living things. Then they move back again. This is how the world stays healthy.

Scientists study these loops. They look at how things move through the air and sea. They also look at the rocks and the soil.

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One loop moves food for plants. Another loop moves the air we breathe. Some things stay in one place for a long time. This helps us learn about our planet.

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1934-V I Vernadsky.jpg

92 words

Nature works in big loops. Scientists call these biogeochemical cycles.

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Cyanobacteria-mats-dominated-by-Anabaena-sp.jpg
These cycles move things like carbon and nitrogen. They move these things through the living and non-living parts of Earth.

The living part is the biosphere. This includes all living things. The non-living parts are the air, water, and rocks.

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Elements move from the rocks to plants. Then they move to animals. Finally, they go back into the air or soil. This way, the Earth can reuse them. Some things stay in one place for a long time. These places are called reservoirs.

A man named Vladimir Vernadsky helped start this science. He saw Earth as a living whole. He talked about three spheres. The abiotic sphere is all non-living things. The biosphere is the living part. The noosphere is the sphere of human thought.

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1934-V I Vernadsky.jpg
Humans can change these spheres with farming or industry. Scientists study these cycles to help our world. They look at how cycles change over time. This helps us understand the history of life on Earth.

175 words

Biogeochemistry is a special science that studies how our world works. It looks at the chemical, physical, and biological things that shape nature. This science studies how different parts of the Earth interact with each other. These parts include the air, the water, the rocks, and all living things. Scientists want to know how the composition of our environment stays the same or changes. It is a way to understand the big systems that keep our planet running.

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This science focuses on things called biogeochemical cycles. These are paths that chemical elements take as they move through the Earth. Elements like carbon, nitrogen, oxygen, and sulfur move in these loops. They travel between the living parts and the non-living parts of our world. The living part is called the biosphere. The non-living parts include the atmosphere, the hydrosphere, and the lithosphere. Some substances move quickly, while others stay in places called reservoirs for a long time.

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People have thought about these cycles for a very long time. Early Greeks believed that nature was made of many cycles. In the 1800s, scientists like Dumas and Boussingault studied how life and chemicals connect. Jean-Baptiste Lamarck used the word biosphere in 1802. Later, scientists like Charles Lyell and John Tyndall studied how climate and rocks work together. These early ideas helped build the foundation for what we study today.

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1934-V I Vernadsky.jpg

A scientist named Vladimir Vernadsky is known as the founder of modern biogeochemistry. He wrote a famous book called The Biosphere in 1926. Vernadsky saw the Earth as one big, living whole. He described three different spheres that work together. The abiotic sphere is made of all non-living energy and materials. The biosphere is the part where life processes happen. He also spoke of the noosphere, which is the sphere of human thought.

1934-V I Vernadsky.jpg
1934-V I Vernadsky.jpg

Today, many different scientists work together to study these cycles. They use biology, geology, and oceanography to learn more. Some researchers look at how humans change the Earth through farming or industry. Others study how to clean up pollution or find new resources like oil. This science helps us understand big changes in our climate. It even helps us look back at the history of life on Earth. By studying these loops, we can learn how to protect our home.

387 words

Biogeochemistry is a complex, interdisciplinary science. It studies the chemical, physical, geological, and biological processes that shape our natural environment. This field examines how the composition of the Earth changes over time. It looks at many different parts of our planet. These include the biosphere, which is the zone of life. It also includes the cryosphere, the hydrosphere, the pedosphere, the atmosphere, and the lithosphere.

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At the heart of this science are biogeochemical cycles. These are the pathways that chemical substances take as they move through the Earth. The cycles connect the biotic and abiotic compartments. The biotic compartment is the biosphere, where living things exist. The abiotic compartments include the atmosphere, the hydrosphere, and the lithosphere. Elements like carbon, nitrogen, oxygen, sulfur, and phosphorus move through these systems. Some substances stay in places called reservoirs for very long periods.

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Cyanobacteria-mats-dominated-by-Anabaena-sp.jpg

Many different types of cycles exist within the Earth's systems. Scientists study elemental cycles for substances like calcium, hydrogen, mercury, and iron. They also study molecular cycles, such as those for water and silica. There are even macroscopic cycles, like the rock cycle. Humans have even created new cycles. These involve synthetic compounds like polychlorinated biphenyls, also known as PCBs. Each cycle shows how matter is constantly being turned over or moved.

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Cyanobacteria-mats-dominated-by-Anabaena-sp.jpg

The history of this field spans many centuries. Early Greek thinkers first proposed that nature consists of cycles. In the 18th and 19th centuries, soil chemistry became important for agriculture. This helped people understand nutrients and biochemical processes. In 1844, Dumas and Boussingault published a paper on organic life and chemical products. This was a major milestone for the field. Jean-Baptiste Lamarck first used the term biosphere in 1802. Later, scientists like Charles Lyell and John Tyndall linked weathering and glaciation to climate.

1934-V I Vernadsky.jpg
1934-V I Vernadsky.jpg

Vladimir Vernadsky is considered the founder of modern biogeochemistry. In his 1926 book, *The Biosphere*, he described the Earth as a living whole. Vernadsky identified three distinct spheres. The abiotic sphere includes all non-living energy and material processes. The biosphere contains the life processes within that abiotic sphere. He also described the noosphere, which is the sphere of human cognitive processes. He observed that higher spheres can modify and dominate the lower spheres.

1934-V I Vernadsky.jpg
1934-V I Vernadsky.jpg

Modern biogeochemistry is a highly interdisciplinary field. Research groups are found in many different university departments. These include atmospheric sciences, biology, ecology, and oceanography. It also connects to geology, soil science, and environmental chemistry. Some scientists focus on evolutionary biogeochemistry. This branch applies cycle studies to the geologic history of the Earth. It investigates how cycles changed as life evolved. Researchers like Manfred Schidlowski have used carbon isotopes to study the biochemistry of the Early Earth.

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1934-V I Vernadsky.jpg

Today, this science has many important applications. It helps researchers understand global change and climate change. Scientists use it to study soil and water acidification. They also look at eutrophication, which is the enrichment of surface waters. Biogeochemistry is used for environmental remediation to clean up pollution. It is also helpful for finding ore deposits and oil. Human activities, such as industry and agriculture, now influence the Earth like a geological force. This makes the study of these cycles vital for our future.

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540 words
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File:Cyanobacteria-mats-dominated-by-Anabaena-sp.jpg
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File:1934-V I Vernadsky.jpg
1934-V I Vernadsky.jpg
File:Bgcjena6.jpg
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