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◆ JACS Au2025-11-25· Adsorption

Climatic Conditions and Amine Loading Impact the Performance of Laminate-Supported Poly(ethylenimine) Direct Air Capture Sorbents

UnJin Ryu, Youn Ji Min, Wenyang Zhao, Yunseok Lee, Matthew J. Realff, Christopher W. Jones

原始摘要(英文原文)· Original abstract
High Resolution Image Download MS PowerPoint Slide Direct air capture (DAC) of CO 2 is a critical technology to combat climate change, offering a scalable approach to mitigate atmospheric CO 2 accumulation. Despite advancements in adsorbent materials, the performance of DAC systems remains highly sensitive to environmental conditions, such as temperature and humidity. Poly(ethylenimine) (PEI)-functionalized silica has emerged as a promising sorbent due to its high CO 2 capacity and tunable properties. However, optimizing its performance across diverse climatic conditions requires a deeper understanding of how the PEI loading impacts the adsorption capacity and kinetics under varying temperatures and humidities. This study reports the CO 2 and H 2 O adsorption kinetics and capacities, desorption behavior, and speciation of adsorbed CO 2 using silica/PEI adsorbents supported within expanded poly(tetrafluoroethylene) (ePTFE) sheets across a wide range of temperatures and humidities, representing the diversity of climates found across the United States. With the obtained data, guidelines for selecting and optimizing PEI-loaded silica-based sorbents for DAC applications are developed. These findings provide a framework for tailoring sorbents to specific climatic scenarios, ensuring a reliable and efficient DAC performance.
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Climatic Conditions and Amine Loading Impact the Performance of Laminate-Supported Poly(ethylenimine) Direct Air Capture Sorbents — 科研速览 Science Skim