DOE OSTI · 2448422
Spatiotemporal Adaptive Passive Direct Air Capture
Abstract
Carbon Collect Inc., along with Arizona State University, the Electric Power Research Institute (EPRI), PM Group, and Trimeric Corporation, completed an initial design of a commercial-scale, passive direct air capture (DAC) system termed “carbon trees” that will capture, separate, and store at least 100,000 tonnes/year of carbon dioxide (CO2) from air (net basis). Passive DAC is unique among DAC technologies in that passive air delivery by wind avoids the energy penalty of forced convection. Carbon Collect Inc.’s sorbent-agnostic approach offers the flexibility to choose sorbents for a wide range of climates. A combination of steam, low-grade heat, and vacuum releases the CO2 from the sorbent, which is extracted from the chamber and purified and compressed for geological storage. A commercial carbon tree forest combines the output of several thousand trees for compression and purification with high heat and energy integration. The project team prepared an initial engineering design package for each of three geographically diverse host sites throughout the United States to better understand the effect of local/regional ambient conditions on DAC system performance and project costs. A techno-economic analysis, life cycle analysis, business case analysis, and an environmental, health, and safety risks assessment were also completed for each of the three geographically diverse host sites.
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Austell, James Michael, Dombrowski, Katherine, Berger, Adam, Cirucci, John, Underhill, Tyler, Baker, Chad, Schreck, Thomas, Trautz, Robert, Marsh, Michael, Lackner, Klaus. 2024-09-25. Spatiotemporal Adaptive Passive Direct Air Capture. https://doi.org/10.2172/2448422
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