We can help our Earth. 

We can help our Earth. 
Some gases in the air trap heat. This makes the world warmer. We can stop this by using clean energy. Sun and wind power are great ways to help. 
We can also save energy. This means using less power in our homes. Changing how we travel helps too. We can use electric buses or bikes. 
Farming also matters. We can grow food in new ways. This helps keep the air clean. We can even plant more trees. Trees take gases out of the air.
Doing these things helps everyone. We can work together for a healthy world.
We can help protect our planet. This work is called climate change mitigation. It means taking steps to limit greenhouse gases. These gases trap heat in our air. 
One big way to help is by changing our energy. We can use clean energy like sun and wind power. Solar and wind power are often the cheapest options. 

How we live also matters. We can change how we travel. Using electric buses or bikes helps a lot. 
Some parts of the world are hard to fix. Making cement and flying planes are difficult. We can use carbon capture and storage. This is a way to catch gases before they reach the air. We must act fast to keep the world from warming too much.
Climate change mitigation is the work humans do to limit greenhouse gases in our atmosphere. These gases act like a blanket that traps heat around the Earth. To keep our planet healthy, we must reduce these emissions. This process is also called decarbonisation. It helps maintain the ecosystems that support human life.
There are many ways this work happens step by step. First, we can replace fossil fuels like coal and oil with clean energy. Solar and wind power are often the cheapest ways to do this. 


Scientists and leaders have studied this for many years. The Intergovernmental Panel on Climate Change, or IPCC, helps define these actions. They look at how humans can reduce emissions or improve carbon sinks. A carbon sink is something that absorbs gases from the air.
Important numbers show us why we must act quickly. In the 2010s, emissions averaged 56 billion tons every year. Coal-fired power stations alone cause 20% of all greenhouse gas emissions.
Mitigation links to many parts of your daily life. You might see people riding bikes or using electric buses. 

Climate change mitigation, often called decarbonisation, refers to human interventions designed to reduce greenhouse gas emissions or enhance natural carbon sinks. These actions aim to sustain ecosystems and maintain human civilisation by limiting the warming effects of gases in the atmosphere. The Intergovernmental Panel on Climate Change (IPCC) defines mitigation as the process of reducing emissions or enhancing the ability of the Earth to absorb these gases.
The mechanism of mitigation involves several interconnected pathways. One primary method is replacing fossil fuels, such as coal, oil, and natural gas, with clean energy sources. Solar energy and wind power are noted as the lowest-cost renewable options for this transition. 


Mitigation strategies are categorized into four distinct types. First is sustainable energy and transport, which focuses on moving away from carbon-heavy fuels. Second is energy conservation, which involves using energy more efficiently. Third is sustainable agriculture and green industrial policy, which targets emissions from food and manufacturing. Finally, there is the enhancement of carbon sinks through carbon dioxide removal. This includes biological methods or direct air carbon dioxide capture and storage (DACCS).
Scientific understanding of these processes has evolved through major assessments. The IPCC provides critical reports, such as the Sixth Assessment Report, to guide global policy. In 2015, the Paris Agreement established goals to limit global warming to well below 2 °C.
The scale of the challenge is defined by significant numbers. In the 2010s, global emissions averaged 56 billion tons (Gt) per year. Coal-fired power stations are the largest single source, accounting for 20% of greenhouse gas emissions.
Many specific examples show how mitigation works in practice. In transportation, switching to electric buses or bicycles can lower emissions. 

Mitigation connects to broad economic and political systems. While often seen as a burden, it is also an opportunity for industrial development and exports. Policies can include eliminating fossil fuel subsidies in favour of clean energy incentives. There are also political solutions, such as the Kigali Amendment, which addresses fluorinated gases. Ultimately, the success of mitigation depends on how countries set precedents for one another. The transition requires broad-based, economy-wide transformations rather than just small, incremental changes.
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