Log in Sign up
Back to Discover
🌍

Oil shale

earth science Maturity 7-9

Some rocks hold oil inside.

OilShaleFossilsEstonia.jpg
OilShaleFossilsEstonia.jpg
These rocks are very old. They come from tiny plants. We can heat the rocks to get oil. This oil helps us make power. It is a special kind of rock. Do you want to see it?

43 words

Some rocks hold oil inside.

OilShaleFossilsEstonia.jpg
OilShaleFossilsEstonia.jpg
These rocks are very old. They come from tiny plants and bits of life.
Torbanite 2 oil shale.jpg
Torbanite 2 oil shale.jpg
We can heat these rocks to get oil. The heat turns the rock into a vapor. Then the vapor cools into liquid oil. This oil can be used for power. It can also be used for building. People have used these rocks for a long time.
XXe - Mine des Télots - 02.jpg
XXe - Mine des Télots - 02.jpg
It is a very special kind of rock.

85 words

Oil shale is a special kind of rock. It is made of tiny grains. These rocks hold a solid mix called kerogen. Kerogen comes from old bits of life. This includes algae and pollen.

OilShaleFossilsEstonia.jpg
OilShaleFossilsEstonia.jpg

We can get liquid oil from these rocks. First, we must heat the shale to a high temperature. This uses a way called pyrolysis. This step turns the rock into a vapor.

Oil shale extraction overview.png
Oil shale extraction overview.png
Then, the vapor cools down. This makes a liquid called shale oil.
Shell insitu.gif
Shell insitu.gif
This oil can be used for power or fuel.

People have used oil shale for a long time. In ancient times, people in Mesopotamia used it for roads.

XXe - Mine des Télots - 02.jpg
XXe - Mine des Télots - 02.jpg
Today, some countries have big oil shale industries. Estonia and China use it a lot. Brazil, Germany, and Russia use it too. Making shale oil is expensive. It can also affect the land and air. The United States has the largest amount of oil shale in the world. Most of it is in the Green River Formation. This area covers parts of Colorado, Utah, and Wyoming.

186 words

Oil shale is a special kind of sedimentary rock. It is made of very fine grains. These rocks are rich in organic matter. This means they contain a solid mixture called kerogen. Kerogen is made from the remains of old living things. These include algae, pollen, and bits of plants.

OilShaleFossilsEstonia.jpg
OilShaleFossilsEstonia.jpg
Some oil shales formed in oceans. Others formed in lakes or on land. This helps scientists understand how the rock was made. It is different from oil-bearing shales. Those rocks already contain liquid petroleum.
Torbanite 2 oil shale.jpg
Torbanite 2 oil shale.jpg

We can turn this rock into liquid fuel. This happens through a process called pyrolysis. First, the oil shale is heated to a very high temperature. This heat turns the kerogen into a vapor.

Oil shale extraction overview.png
Oil shale extraction overview.png
Next, the vapor is allowed to cool down. As it cools, it turns into a liquid called shale oil. This liquid is a substitute for regular crude oil. It can also be burned directly in furnaces. This can provide heat for homes or power for electricity.
Shell insitu.gif
Shell insitu.gif

Humans have used oil shale for thousands of years. Around 3000 BC, people in Mesopotamia used "rock oil" for roads. They also used it as an adhesive for buildings. In the 10th century, an Arab physician described how to extract oil from it. The first patent for extracting oil was granted in 1694 in Britain. Modern industrial mining began in 1837 in France. During the Industrial Revolution, Scotland produced much oil shale. They used it to make lamp oil and kerosene for lighting.

XXe - Mine des Télots - 02.jpg
XXe - Mine des Télots - 02.jpg

Today, different countries use oil shale in different ways. Estonia and China have well-established industries. They use it for both oil and power. Brazil, Germany, and Russia also use it to some extent. The United States has the largest amount of oil shale resources. Most of these are in the Green River Formation. This formation covers parts of Colorado, Utah, and Wyoming. About 80% of the world's oil shale resources are in the United States.

Production of oil shale.png
Production of oil shale.png

Extracting oil from shale is a hard job. It costs more money than getting regular crude oil. It can also have a large impact on the environment. Mining can affect how we use land and water. It can also cause air pollution and greenhouse-gas emissions.

VKG Ojamaa kaevandus.jpg
VKG Ojamaa kaevandus.jpg
Scientists must balance the need for energy with these concerns. Even so, the huge amount of oil shale in the world keeps it interesting. It remains a major part of how we study the Earth's history.

428 words

Oil shale is an organic-rich, fine-grained sedimentary rock. It is not a standard fossil fuel like petroleum, but it contains a solid mixture of organic compounds called kerogen. This kerogen can be processed into liquid hydrocarbons. While the term "shale oil" is often used for both, scientists distinguish between oil shale and oil-bearing shales. Oil-bearing shales, such as the Bakken or Eagle Ford Formations, contain tight oil already inside the rock. In contrast, oil shale requires heating to release its liquid content.

OilShaleFossilsEstonia.jpg
OilShaleFossilsEstonia.jpg

To produce fuel, the rock undergoes a chemical process called pyrolysis. This process begins by heating the oil shale to a very high temperature. This heat causes the kerogen to transform into a vapor. Once the vapor is produced, it is allowed to cool down. As it cools, the vapor separates into two distinct parts: a liquid called shale oil and a combustible shale gas. The resulting shale oil acts as a substitute for conventional crude oil.

Oil shale extraction overview.png
Oil shale extraction overview.png

Geologists classify oil shales based on how they were originally deposited. This classification is often based on the environment where the original organic matter settled. Marine oil shales formed on the ocean floor. Lacustrine oil shales formed at the bottom of lakes. Terrestrial oil shales were deposited on land. This system was developed by Adrian C. Hutton to help estimate the yield and composition of extracted oil. Scientists also use the van Krevelen diagram to classify kerogen types based on hydrogen, carbon, and oxygen content.

Torbanite 2 oil shale.jpg
Torbanite 2 oil shale.jpg

Human history with oil shale stretches back to prehistoric times. Around 3000 BC, people in Mesopotamia used "rock oil" for road construction and building adhesives. During the Iron Age, Britons used tractable oil shales for burial cists or ornaments. The first patent for extracting oil from stone was granted in Britain in 1694. Modern industrial mining began in 1837 in Autun, France.

XXe - Mine des Télots - 02.jpg
XXe - Mine des Télots - 02.jpg
During the Industrial Revolution, Scotland became a major producer. By 1913, Scottish operations produced about 2% of the global petroleum supply. This was driven by the demand for kerosene and lamp oil.

Global oil shale resources are massive but vary in accessibility. A 2016 estimate set the total world resources at an amount equivalent to the yield of trillions of barrels of oil. The United States holds the largest share, containing more than 80% of the world's total resources. Most of this is found in the Green River Formation, which spans Colorado, Utah, and Wyoming. Other significant deposits exist in China, Russia, and Brazil. However, there is a difference between "resources" and "reserves." Resources are all known deposits, while reserves are those that can be extracted economically with current technology.

Extraction is a complex and expensive endeavor. Producing shale oil costs more financially than producing conventional crude oil. It also carries a significant environmental footprint. Mining and processing can lead to issues with land use and waste disposal. It also requires careful water use and wastewater management. Furthermore, the process can result in air pollution and greenhouse-gas emissions.

VKG Ojamaa kaevandus.jpg
VKG Ojamaa kaevandus.jpg

Despite these challenges, oil shale remains a key part of the energy conversation. Estonia and China have well-established industries that use oil shale for both oil and power generation. Other countries like Germany, Brazil, and Russia also utilize it to some extent. The industry has seen many ups and downs. For example, the 1973 oil crisis led to a production peak in 1980. Later, low oil prices caused major projects, like Exxon's Colony Shale Oil Project, to be canceled. As technology evolves, the potential of these vast organic-rich rocks continues to be studied.

Production of oil shale.png
Production of oil shale.png

610 words
🖼️ Images & Media (8)
File:Tootuskihind läbilõige.jpg
Tootuskihind läbilõige.jpg
File:Torbanite 2 oil shale.jpg
Torbanite 2 oil shale.jpg
File:OilShaleFossilsEstonia.jpg
OilShaleFossilsEstonia.jpg
File:Production of oil shale.png
Production of oil shale.png
File:XXe - Mine des Télots - 02.jpg
XXe - Mine des Télots - 02.jpg
File:Shell insitu.gif
Shell insitu.gif
File:Oil shale extraction overview.png
Oil shale extraction overview.png
File:VKG Ojamaa kaevandus.jpg
VKG Ojamaa kaevandus.jpg
Up Next
🌍
Shale
Earth Science
More to explore

🔬 Go deeper

More advanced topics to explore

🪜 Step back

Simpler topics to build understanding

What is Nepedia?

A free, ad-free encyclopedia for children. Every article is written at five reading levels, so the same page works for a five-year-old and a fifteen-year-old — use the level switcher above to see this one change. No account needed to read.