Wil Sillen's post

Carbon removal methods are ways of taking carbon dioxide (CO2) out of the atmosphere and storing it in different forms, such as plants, soils, rocks, or products. Carbon removal is important for achieving net-zero emissions and limiting global warming. There are many types of carbon removal methods, such as:
● Natural carbon removal: This involves enhancing the ability of natural ecosystems, such as forests, grasslands, wetlands, and oceans, to capture and store CO2 through photosynthesis and other biological processes. Examples of natural carbon removal include reforestation, afforestation, soil carbon sequestration, and coastal blue carbon1.
● Technological carbon removal: This involves using machines or chemicals to capture CO2 from the air or other sources and store it in geological formations, mineralized rocks, or durable products. Examples of technological carbon removal include direct air capture, bioenergy with carbon capture and storage, and carbon mineralization2 3.
If you want to learn more about carbon removal methods, you can check out these web pages:

● [Carbon Removal | World Resources Institute]([object Object])

● [What is carbon removal - and how does it work? | World Economic Forum]([object Object])

Carbon removal and carbon capture are two different ways of reducing the amount of carbon dioxide (CO2) in the atmosphere, which is a major contributor to global warming and climate change. However, they have different definitions, methods, and impacts.
Carbon removal, also known as carbon dioxide removal, refers to the process of taking CO2 out of the air and storing it in different forms, such as plants, soils, rocks, or products. Carbon removal can be done by natural or technological means, and it can reduce the overall concentration of CO2 in the atmosphere. Some examples of carbon removal methods are reforestation, soil carbon sequestration, direct air capture, and carbon mineralization1 2.
Carbon capture, also known as carbon capture and use or storage (CCUS), refers to the process of capturing CO2 from a specific source, such as a power plant or a factory, and storing it in underground reservoirs or using it for commercial purposes. Carbon capture can prevent the emission of CO2 from fossil fuels or other industrial processes, but it does not remove CO2 that is already in the air. Some examples of carbon capture methods are post-combustion capture, pre-combustion capture, and oxy-fuel combustion3 4.
The main difference between carbon removal and carbon capture is that carbon removal reduces the existing amount of CO2 in the atmosphere, while carbon capture prevents the addition of new CO2 from certain sources. Both methods have benefits and challenges for mitigating climate change, and they are not mutually exclusive. However, carbon removal is considered more essential for achieving net-zero emissions and limiting global warming to 1.5°C, as recommended by the Intergovernmental Panel on Climate Change (IPCC)5. Carbon capture, on the other hand, is seen as a transitional solution that can help reduce the carbon footprint of some sectors, such as electricity and industry, until cleaner alternatives are available.
If you want to learn more about the difference between carbon removal and carbon capture, you can check out these web pages:
● [Carbon Removal Versus Carbon Capture, Explained - Market Realist]([object Object])

● [Carbon Capture vs. Carbon Removal: What's the Difference? - DXP Enterprises]([object Object])

  • Munene Mugambi

    14 w

    We have to stop the main production of carbon to reduce carbon in the atmosphere so we have lower numbers to deal with

    • George Kariuki

      14 w

      Understanding the differences between removal and capture is crucial for advocating for effective climate solutions.

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