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- PI(s): Jaime Palter
- Fiscal Year Funded: 2023
Why we care Terrestrial liming, or the addition of a basic (alkaline) material like calcium carbonate to crops and lawns is a common agricultural soil treatment. When applied on land..
- PI(s): Kevin Kroeger
- Fiscal Year Funded: 2023
Why we care Enhanced weathering is a carbon capture technology that increases ocean alkalinity by adding rocks with ultrabasic minerals, particularly in ecosystems like wetlands and mangroves. This project examines..
- PI(s): Adam Subhas
- Fiscal Year Funded: 2023
Why we care Ocean alkalinity enhancement relies on modifying the acid-base properties of seawater to remove carbon dioxide, however the effect of this strategy on primary productivity, cell physiology, and..
- PI(s): Laura Haynes
- Fiscal Year Funded: 2023
Why we care Foraminifera, or forams, are single-celled organisms that produce calcium carbonate shells and play a crucial role in the ocean’s carbon cycle. Ocean alkalinity enhancement aims to increase..
- PI(s): Cristina Schultz
- Fiscal Year Funded: 2023
- Grant Award # 13323
Why we care The ocean seafloor, or benthos, serves as the only long-term storage of oceanic carbon on geologic timescales. However, the interaction between ocean water and sediments and its..
- PI(s): David Nicholson
- Fiscal Year Funded: 2023
Why we care Tracking how ocean alkalinity enhancement reduces acidity, resulting in carbon dioxide removal from the atmosphere is important for knowing how, where and when to deploy this approach..