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Salting And Burying Biomass Crops In Dry Landfills Could Economically Capture Greenhouse Gases For Thousands Of Years

Salting And Burying Biomass Crops In Dry Landfills Could Economically Capture Greenhouse Gases For Thousands Of Years

By Marni Ellery

 

Reducing global greenhouse gas emissions is critical to avoiding a climate disaster, but current carbon removal methods are proving to be inadequate and costly. Now researchers from the University of California, Berkeley, have proposed a scalable solution that uses simple, inexpensive technologies to remove carbon from our atmosphere and safely store it for thousands of years.

As reported today in the journal Proceedings of the National Academy of Sciences, researchers propose growing biomass crops to capture  from the air, then burying the harvested vegetation in engineered dry biolandfills. This unique approach, which researchers call agro-sequestration, keeps the buried biomass dry with the aid of salt to suppress microbials and stave off decomposition, enabling stable sequestration of all the biomass carbon.

The result is carbon-negative, making this approach a potential game changer, according to Eli Yablonovitch, lead author and Professor in the Graduate School in UC Berkeley's Department of Electrical Engineering and Computer Sciences.

"We're claiming that proper engineering can solve 100% of the climate crisis, at manageable cost," said Yablonovitch. "If implemented on a global scale, this carbon-negative sequestration method has the potential to remove current annual carbon dioxide emissions as well as prior years' emissions from the atmosphere."

Unlike prior efforts toward carbon neutrality, agro-sequestration seeks not net carbon neutrality, but net carbon negativity. According to the paper, for every metric ton (ton) of dry biomass, it would be possible to sequester approximately 2 metric tons of carbon dioxide.

Agro-sequestration: A way to stably sequester carbon in buried biomass

The idea of burying biomass in order to sequester carbon has been gaining popularity, with startup organizations burying everything from plants to wood. But ensuring the stability of the buried biomass is a challenge. While these storage environments are devoid of oxygen, anaerobic microorganisms can still survive and cause the biomass to decompose into carbon dioxide and methane, rendering these sequestration approaches carbon-neutral, at best.

But there is one thing that all life forms require—moisture, rather than oxygen. This is measured by "water activity," a quantity similar to relative humidity. If internal water activity falls below 60%, all life comes to a halt—a concept underpinning the UC Berkeley researchers' new agro-sequestration solution.

"There are significant questions concerning long-term sequestration for many of these recently popularized nature- and agriculturally-based technologies," said Harry Deckman, co-author of the study and a researcher in the Department of Electrical Engineering and Computer Sciences. "The agro-sequestration approach we're proposing can stably sequester the carbon in dried salted biomass for thousands of years, with less cost and higher carbon efficiency than these other air capture technologies."

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Midwest Weather Shock: Flash Drought Turns Into Heavy Rain Threat This Week (2026 Forecast)

Video: Midwest Weather Shock: Flash Drought Turns Into Heavy Rain Threat This Week (2026 Forecast)

A rapidly changing Midwest weather pattern is unfolding in 2026 as areas that recently slipped into abnormal dryness and flash drought conditions are now facing the threat of heavy rain and repeated storm systems.

After a wet spring erased early drought conditions, regions across Illinois, Iowa, Wisconsin, Minnesota, and northern Missouri have quickly dried out again since mid-to-late May. Soil moisture is dropping fast, and crops like corn and soybeans are beginning to feel the stress of rising temperatures and lack of consistent rainfall. Now, weather models show a major shift.

A developing system moving in from the Northern Plains is expected to bring multiple rounds of showers and thunderstorms, with the potential for locally heavy rainfall across the Midwest. While some areas may miss out, others could finally see much-needed relief from the growing dryness. In this video, we break down:

Current drought conditions across the Midwest

Why a flash drought is developing quickly

Timing and path of incoming storm systems

Which states are most likely to see heavy rain

How long this wet pattern could last

Will this rain end the drought or create new flooding risks? Watch the full forecast to find out.