Seven things to know about carbon  capture and storage technology

Seven things to know about carbon capture and storage technology

When it comes to technology that’s essential to reducing industrial CO2?emissions, all eyes are on carbon capture and storage, or CCS.?

And it’s easy to understand why.

CCS is the process of capturing CO2?from industrial activities that would otherwise be released into the atmosphere then injecting that CO2?into deep geologic formations for safe, secure and permanent storage underground.?Its ability to decarbonize emission-intensive sectors like manufacturing and power generation will be crucial as society works to address climate change and meet society’s goals of the?Paris Agreement . While renewable energy sources will play an important role in the world’s?energy transition , CCS remains one of the few proven technologies capable of significantly reducing emissions in these hard-to-decarbonize sectors.

But like all energy technologies, there’s a lot of information out there to digest. So here are just seven examples of why CCS is one of the keys that could unlock a lower-emission future.

Take a look.

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Carbon capture and storage is one of the few proven technologies that can deliver deep emissions reductions in industrial sectors

Decarbonization is incredibly difficult in industrial sectors like power generation and manufacturing due to the massive amounts of energy required to keep facilities running. And all that energy adds up to more than?70% of all global energy-related emissions . Currently, CCS is one of the few proven technologies with the potential to decarbonize these sectors while also being cost-effective and scalable.

ExxonMobil’s proposed?CCS hub in Houston ?could capture up to 100 million metric tons of CO2?per year by 2040 from the industrial area around the Houston Ship Channel. It could also lay the groundwork for future CCS hubs across the country.

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CCS could capture more than 90% of CO2 emissions

It will take a range of technologies to meet climate goals. But with the ability to?capture 90% ?of emissions at power plants and industrial facilities, broad CCS deployment could put the world on the right path toward a lower-carbon future.

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Experts agree that carbon capture and storage will be crucial to mitigating the risks of climate change

As the technology becomes widely deployed, most experts agree CCS technology will play an important role in a lower-carbon energy future.?Leading scientists and policy makers ?advocate for it, including President Biden, who has talked about the?benefits of CCS ?for both the economy and the environment. In addition, the International Energy Agency has said “reaching net-zero [emissions] will be virtually impossible” without it.

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Natural gas with CCS ensures a more stable and cost-effective energy supply than renewables alone

Natural gas coupled with CCS could be an energy combination of choice in a lower-carbon future. That’s because natural gas can keep up with changing energy demand, and it burns cleaner than other fossil fuels, like coal. For energy-intensive industries, those factors are especially important for reaching lower-emission goals.

In addition, retrofitting existing facilities with CCS is more cost-effective than a full switch to renewables because the natural gas infrastructure that powers facilities is already in place.

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There’s more than one way to capture?CO2

ExxonMobil and its partners are working to develop a range of CCS technologies through a portfolio of early-stage, fundamental research and development. One technology, direct air capture with?Global Thermostat , works by essentially vacuuming CO2?emissions from the atmosphere. Another uses carbonate fuel cells to capture emissions from exhaust streams. ExxonMobil is advancing this technology in collaboration with FuelCell Energy. In addition, ExxonMobil is researching new materials, like?metal-organic frameworks , or MOFs, which have massively condensed surface areas to absorb emissions like a sponge. And finally, the company is researching how to apply trees’ and other plants’ natural ability to capture carbon in biosequestration practices.

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CO2?can?be safely and permanently stored underground

Thanks to their geological makeup, certain rock formations can safely and permanently trap CO2?underground. In fact, underground geological storage of CO2?has been a naturally occurring process for hundreds of millions of years. Independent studies, including from?Carnegie Mellon University , agree that geologic CO2?storage remains a safe option to address climate change.

Geologic formations beneath the Gulf of Mexico, where ExxonMobil plans to store emissions captured in the nearby Houston industrial area, are estimated to be large enough to safely store up to 500 billion metric tons of CO2?(or the equivalent of more than 130 years of the country’s industrial and power generation emissions).

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ExxonMobil is responsible for capturing 40% of all the?CO2?ever captured

With more than 30 years of experience in the field, ExxonMobil is a leader in CCS, having captured more CO2?than any other company in the world. Currently, ExxonMobil captures about?9 million metric tons of CO2?per year ?at facilities in the United States, Australia and Qatar, and is exploring multiple new opportunities, including one in?Houston’s industrial area . The company’s experience scaling up major projects and expertise in CCS makes it uniquely qualified to lead the charge in turning these plans into a reality.

While no single solution can fully address climate change, carbon capture and storage technology will be essential to significantly lowering emissions on a global scale. Learn more about our?carbon capture and storage research ?and how we’re driving innovation.

This article was originally published on EnergyFactor.com .

Joel Gubihama ??

Founder @ Trim ? A DApp for personal care workers ?? Scaling impactful Web3 ecosystems globally | Prev. Petrodatycs

2 年

Significant cost reductions and lower energy penalties from the emergence of advanced multi-component solvent systems (Alstom chilled ammonia, CANSOLV amine) for SOx, NOx, Hg and CO2 removal could be game changing.

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Mike B.

Retired High School Science teacher, former petroleum geologist

2 年

Funny, persuasive and great CCS video. https://youtu.be/MSZgoFyuHC8 "... [Carbon Capture] is not a viable strategy for really reducing carbon emissions, but it does give fossil fuel interests a convenient talking point." ... "there is no evidence that these sorts of projects can be viable at the scale that is necessary to reduce net carbon into the atmosphere," ... "what does work is moving away from fossil fuels, toward renewable energy." https://www.commondreams.org/news/2022/02/08/climate-expert-debunks-big-oils-lies-about-carbon-capture-nature-based-solutions The clean energy claims of BP, Chevron, ExxonMobil and Shell: A mismatch between discourse, actions and investments https://doi.org/10.1371/journal.pone.0263596 https://journals.plos.org/plosone/article?id=10.1371/journal.pone.0263596 https://www.cnbc.com/2022/01/24/shell-ccs-facility-in-canada-emits-more-than-it-captures-study-says.html https://time.com/6125303/direct-air-carbon-capture-infrastructure/

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Carlos Richer

CEO and founder of the "Disposable Diaper Network" on LinkedIn

2 年

Love it!

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Mike B.

Retired High School Science teacher, former petroleum geologist

2 年

Deny, Deceive, Delay: Documenting and Responding to Climate Disinformation at COP26 and Beyond https://www.isdglobal.org/isd-publications/deny-deceive-delay-documenting-and-responding-to-climate-disinformation-at-cop26-and-beyond-full/

Jo?o Victor Brayner Antunes da Silva

Software Engineer C# .NET | C# | .Net | ASP NET | Data Analytics | Business Intelligence

2 年

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