ADM and Carbon Capture and Storage
CCS is an important technology to help us meet the growing demand for low-carbon energy and ingredient solutions.


What is Carbon Capture and Storage
Carbon Capture and Storage (CCS) uses the Earth's natural trapping system to store CO2, a natural element already found underground. CO2 is captured by industrial activity, purified, and then compressed into liquid-like form for storage. CO2 is then transported to injection wells where it is safely injected into sealed off geological formations and can be stored securely.
ADM's CCS operations near Decatur involve capturing CO2 from one of ADM's nearby corn-processing plants, and then injecting it more than 5,550 feet underground for permanent sequestration. Over the past decade, ADM, working closely with government, academic and industrial partners, has safely sequestered approximately 4.5 million metric tons of CO2, or the equivalent of taking more than one million cars off the road for an entire year.
ADM and Carbon Capture & Sequestration @Model.HeadlineLevel>
ADM is a national and world leader in the implementation of CCS technology, and has been recognized for its exemplary work being done in the fields of energy and environmental management. ADM was the first American company to be granted a Class VI CCS well permit by the United States Environmental Protection Agency and has been successfully operating CCS wells in Decatur for more than a decade.
ADM has also worked with the Department of Energy and the Illinois Geological Survey at the University of Illinois for many years to validate the safety, security and effectiveness of CCS technology.
Deploying CCS technology in ADM’s processing operations is one of the many ways ADM is decarbonizing its footprint. CCS is an important technology to help us meet the growing demand for low-carbon energy and ingredient solutions, ranging from sustainable aviation fuel to regenerative agriculture.
What Are They Saying About CCS?
Carbon capture and storage is safe and key to a stronger future for midwest agriculture.

A growing consensus of voices representing agriculture, biofuels, labor, the environmental community, and policymakers on both sides of the aisle is speaking up about the importance of CCS.
• Nature Climate Change CCS feasibility analysis
• U.S. DOE Office of Clean Energy Demonstrations CCS fund
• Shell, Equinor and TotalEnergies CCS project in Norway

An important factor for successful storage of CO2 is the geology of the injection site location. CCS wells inject purified and compressed CO2 more than 1.25 miles underground. Locations are chosen because of their geological makeup which have both porous rock for storage at the optimal depth and several layers of impermeable rocks above the storage area to serve as seals.

The Illinois Basin features the Mt. Simon Sandstone Saline Reservoir located about 1.5 miles underground, as well as several layers of shale rock, making it ideal for CCS storage.




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