Log in Sign up
Back to Discover
⚛️

Chlorofluorocarbon

physical science Maturity 9-11 climate
This article covers sensitive topics: climate. Parents can manage visibility in Parental Controls.

Some gases help keep things cold. They were used in fridges. These gases can hurt the air high above us. We must use new things now. This helps our world stay safe. Do you like cold drinks?

47 words

Some gases help keep things cold. They were used in fridges. These gases were also used in spray cans. They can help put out fires too.

These gases can hurt the air high above us. This can let in more heat from the sun. This makes the world warmer.

People worked together to stop using them. They found new things to use instead. This helps the air high above us stay safe. The air is starting to get better now.

93 words

Chlorofluorocarbons, or CFCs, are a group of man-made gases.

CFCs.svg
CFCs.svg
They are made of carbon, hydrogen, chlorine, and fluorine. Long ago, people used them in many ways. They were used in fridges to keep food cold. They were also used in spray cans and to put out fires. These gases were popular because they were not toxic. This means they were not poisonous to people.

However, CFCs cause problems in our atmosphere. When they reach the upper air, they break apart. This process lets out chlorine atoms. These atoms destroy ozone. Ozone is a layer that protects Earth from the sun's rays. CFCs also act as greenhouse gases. This means they trap heat near the Earth. This can make the world warmer. Because of this, countries signed the Montreal Protocol. This is a plan to stop making CFCs. Now, people use safer things like HFCs instead. This helps the ozone layer begin to heal.

178 words

Chlorofluorocarbons, often called CFCs, are a group of man-made gases.

CFCs.svg
CFCs.svg
These gases are made of carbon, hydrogen, chlorine, and fluorine atoms. They were very popular in the past because they were not toxic to people. They were also not very flammable, which made them safer than other gases. Because of these helpful traits, they were used in many different ways. They worked as refrigerants to keep food cold in fridges. They were also used as propellants in spray cans and in systems to put out fires.

These gases work by moving through different states of matter. Many CFCs have boiling points that make them perfect for cooling. For example, the common gas R-12 boils at -29.8 degrees Celsius.

1979- Radiative forcing - climate change - global warming - EPA NOAA.svg
1979- Radiative forcing - climate change - global warming - EPA NOAA.svg
When these gases reach the upper atmosphere, a specific thing happens. High energy from the sun causes a chemical bond to break. This releases a chlorine atom into the air. This chlorine atom then acts as a catalyst to destroy ozone. It turns ozone into oxygen, which means the protective layer becomes thinner.

Scientists discovered the danger of these gases in the 1970s. Before this, people thought they were very safe to use. In 1974, two chemists named F. Sherwood Rowland and Mario Molina found the truth. They showed that CFCs were causing the ozone layer to disappear. This discovery led to a big global effort to protect the planet. Many countries signed a special agreement called the Montreal Protocol. This plan helped stop the making of most CFCs.

Ozone cfc trends.png
Ozone cfc trends.png

There are many different types of these compounds. CFCs are made from methane and ethane. There are also HCFCs, which are hydrochlorofluorocarbons. Some versions even include bromine, which are called BFCs.

Future ozone layer concentrations.jpg
Future ozone layer concentrations.jpg
A common gas called R-12 is also known as Freon. In the 1930s, Thomas Midgley Jr. helped create these gases for General Motors. By 1935, over 8 million refrigerators used R-12. Today, billions of kilograms of R-12 are used to help make Teflon.

Understanding CFCs helps us see how everything in nature is linked. The gases we use in our homes can travel all the way to the sky. Once they are up there, they change the air around our planet. This can change how much sunlight reaches the Earth's surface. CFCs also act as greenhouse gases by trapping heat in the atmosphere. This happens because they absorb heat in a special part of the light spectrum. By learning about these gases, we learn how to keep our atmosphere healthy.

450 words

Chlorofluorocarbons, commonly known as CFCs, are a group of man-made chemicals.

CFCs.svg
CFCs.svg
They are halogenated hydrocarbons, meaning they contain carbon and hydrogen along with halogens like chlorine and fluorine. These compounds are produced as volatile derivatives of gases like methane, ethane, and propane. Because they are non-toxic, non-flammable, and highly stable, they became essential in many industrial processes. They served as refrigerants, aerosol propellants, fire suppressants, and solvents. Today, their legacy is defined by their impact on the Earth's atmosphere.

The chemical structure of CFCs is based on carbon atoms bonded with tetrahedral symmetry. However, because fluorine and chlorine atoms differ in size and charge from hydrogen, the symmetry is not perfect. These molecules are generally volatile, though less so than their parent alkanes. This lower volatility is caused by molecular polarity, which creates intermolecular interactions. For instance, methane boils at −161 °C, while fluoromethanes boil between −51.7 °C and −128 °C. This specific range of boiling points makes them highly effective as refrigerants.

There are several distinct classes of these compounds based on their chemical makeup. CFCs are derived from methane and ethane. Hydrochlorofluorocarbons, or HCFCs, include both hydrogen and halogens. Bromofluorocarbons, or BFCs, include bromine in their structure. Hydrofluorocarbons, or HFCs, are another class that contains fluorine but lacks chlorine. Scientists use a specific numbering system to identify them. For example, in the name Freon-12, the last digit indicates the number of fluorine atoms. The next digit represents the number of hydrogen atoms plus one. The digit before that represents the number of carbon atoms minus one.

The history of CFCs began with a need for safety. In the 1920s, refrigerators used toxic gases like ammonia or chloromethane. After fatal accidents occurred, companies like General Motors and DuPont worked to find a safer alternative. Thomas Midgley Jr. is credited with synthesizing the first CFCs. In 1930, he famously demonstrated the gas's safety by inhaling it and blowing out a candle. By 1935, over 8 million refrigerators used the refrigerant R-12. However, the success of these chemicals changed when scientists discovered their environmental cost.

In 1974, chemists F. Sherwood Rowland and Mario Molina discovered that CFCs deplete the ozone layer. This happens through a process called photo-induced scission. When CFCs reach the upper atmosphere, high-energy UV radiation breaks a carbon-chlorine bond. This releases a chlorine radical, written as Cl•. This radical acts as a catalyst, meaning it triggers a reaction without being consumed itself. It converts ozone into ordinary oxygen. This process thins the ozone layer, allowing more UV-B radiation to reach the Earth's surface.

Beyond ozone depletion, CFCs are powerful greenhouse gases. They possess strong infrared absorption bands in the 7.8–15.3 μm range. This specific area is called the "atmospheric window" because the atmosphere is usually transparent here. Because CFCs absorb energy in this window, they create a "super" greenhouse effect. Unlike carbon dioxide, which is highly concentrated, CFCs exist in low concentrations. This means their warming effect increases linearly with their mass. Even small amounts can significantly trap heat that would otherwise escape into space.

1979- Radiative forcing - climate change - global warming - EPA NOAA.svg
1979- Radiative forcing - climate change - global warming - EPA NOAA.svg

The global response to these findings was the Montreal Protocol. This international agreement led to a phase-out of CFC manufacturing. Many industries have switched to hydrofluorocarbons (HFCs) or hydrofluoroolefins (HFOs). While these replacements do not deplete ozone, they are still studied for their climate impacts. NASA reported in 2018 that the ozone hole has begun to recover due to these bans.

Future ozone layer concentrations.jpg
Future ozone layer concentrations.jpg
However, recent research from 2019 showed an increase in CFCs due to unregulated use in some regions.
Ozone cfc trends.png
Ozone cfc trends.png
This highlights the ongoing need to monitor how man-made chemicals interact with our global systems.

623 words
🖼️ Images & Media (6)
File:1979- Radiative forcing - climate change - global warming - EPA NOAA.svg
1979- Radiative forcing - climate change...
File:CFCs & Ozone.jpg
CFCs & Ozone.jpg
File:CFCs.svg
CFCs.svg
File:Future ozone layer concentrations.jpg
Future ozone layer concentrations.jpg
File:Ozone cfc trends.png
Ozone cfc trends.png
File:USEPA response to Hurricane Sandy with 45 freon tanks have been staged awaiting reclamation and recycling on 2 December 2012.jpg
USEPA response to Hurricane Sandy with 45...
Up Next
⚛️
Dichlorodifluoromethane
Physical Science
More to explore

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.