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Geochemical cycle

earth science Maturity 9-11

Earth moves things around in a big way. Heat moves bits of rock deep down. It can also push hot rock up. This makes new land over a long time. It helps our world stay the same. Can you feel the ground?

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Earth moves things around deep down. Heat and pressure move parts of the ground. This can happen in two ways. One way is when plates sink deep. This is called subduction. The other way is through volcanoes. Hot rock can erupt from the ground. This makes new rocks. These changes take a very long time. They can even change our oceans. The Earth keeps its same bits of matter. It just moves them to new spots.

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Earth moves its parts in a big way. This way is called a geochemical cycle. It moves elements like silicon and aluminium. These elements move between the deep Earth and the surface.

One way this happens is through subduction. This is when one tectonic plate sinks under another. The plate goes down into the mantle. This causes many chemical changes.

Another way is through volcanism. This happens when plates move apart. A rift forms in the ground. Molten rock called magma erupts to the surface. This magma cools to make igneous rocks.

If the rock cools on the surface, it is extrusive. If it cools inside the Earth, it is intrusive. These cycles take a very long time. They can change oceans and continents.

Earth is a closed system for matter. This means matter is not made or destroyed. It only moves and changes. The same matter stays on Earth since it was formed.

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Earth moves its parts in a very big way. This way of moving is called a geochemical cycle. These cycles show how chemical elements move through the Earth. They travel between the surface and the crust. This movement helps elements interact with different reservoirs. A reservoir is a place where chemicals stay for a time. These cycles involve both geology and chemistry. They move elements like silicon and aluminium. They also move alkali metals. This movement can change oceans and continents over a long time.

There are two main ways these cycles work. One way is called subduction. This happens at convergent boundaries. One tectonic plate moves under another plate. It sinks down into the mantle. This sinking causes many chemical changes. The other way is called volcanism. This happens at divergent boundaries. This is when tectonic plates move apart. A rift forms in the ground.

During volcanism, molten rock called magma erupts. This magma reaches the surface of the Earth. The magma then cools and crystallizes. This process forms igneous rocks. If it cools on the surface, it is extrusive. If it cools inside the lithosphere, it is intrusive. These rocks can then reach the surface by denudation. These steps move material between the deep Earth and the surface.

Scientists study these cycles to understand our planet. They look at the mantle and the core. These parts make up the deep Earth. The lithosphere is the Earth's crust. Geochemical cycles happen between these two areas. Some people use different names for these cycles. They might say biogeochemical cycle instead. That term refers to the atmosphere and the biosphere. It also includes the hydrosphere and the pedosphere.

Earth is a special kind of system. It is open to radiation from the sun. However, it is closed when it comes to matter. This follows the law of conservation of mass. This law says matter cannot be created or destroyed. Matter only changes its form or its place. The same matter stays on Earth since it was formed. It just moves through these cycles.

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A geochemical cycle is a complex pathway for chemical elements. These elements move through the Earth's crust and surface. This process allows chemicals to interact with various reservoirs. A reservoir is a place where chemicals are stored for a time. These cycles involve both geological and chemical factors. They move elements like silicon and aluminium through the planet. They also move general alkali metals. Over very long periods, these cycles cause massive changes. They help drive the evolution of our oceans and continents.

To understand these cycles, we must look at the Earth system. Earth is an open system regarding radiation from the sun. However, it is practically closed when it comes to matter. This means Earth follows the law of conservation of mass. This law states that matter cannot be created or destroyed. Instead, matter is only transformed or migrated. The same matter remains on Earth as it was when the planet formed. The system contains seven different reservoirs. These include the atmosphere, hydrosphere, biosphere, pedosphere, and lithosphere. The deep Earth and outer space are considered isolated reservoirs.

Geochemical cycles focus on specific interactions within the Earth. They occur between the deep Earth and the lithosphere. The deep Earth consists of the mantle and the core. The lithosphere is the Earth's outer crust. Scientists often distinguish these from biogeochemical cycles. Biogeochemical cycles involve the atmosphere, hydrosphere, lithosphere, and biosphere. While some use the terms interchangeably, they refer to different reservoirs. Geochemical cycles specifically deal with crustal and sub-crustal reservoirs. This distinction helps scientists track how elements move deep underground.

There are two primary pathways for material flux. Flux is the movement of material between reservoirs. One pathway is subduction, which occurs at convergent boundaries. This happens when one tectonic plate moves under another plate. The plate sinks deep into the mantle. This sinking process creates many geochemical transformations. These changes help cycle elements back into the deep Earth. This is a vital part of the planet's internal movement.

The second major pathway is volcanism. This process occurs at divergent boundaries. At these boundaries, one tectonic plate separates from another. This separation creates a rift in the crust. Molten rock, known as magma, erupts through this rift. This magma travels from the deep Earth toward the surface. This movement is a key way that elements are redistributed. It connects the deep mantle to the surface reservoirs.

Volcanism also leads to the creation of new rocks. When magma reaches the surface, it cools and crystallizes. This process forms igneous rocks. We categorize these rocks based on where they form. If crystallization happens at the surface, they are extrusive igneous rocks. If crystallization happens within the lithosphere, they are intrusive igneous rocks. Intrusive rocks can eventually reach the surface through denudation. This cycle of melting, cooling, and moving is constant.

These cycles involve the natural separation and concentration of elements. They also include heat-assisted recombination processes. These processes allow elements to bond in new ways. Because these changes happen over such long timescales, they are hard to see. We cannot easily notice them in our daily lives. However, they are responsible for the very structure of our world. They ensure that the chemical building blocks of Earth are always in motion.

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