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Updated: Sep 13, 2025

Author Spotlight: Standardizing the Development of Amine-Based Silica Composites as CO2 Adsorbents for Direct Air Capture
Published on: September 29, 2023
Engineering Amine-Containing Adsorbents for Efficient Carbon Dioxide Capture in Closed-Circuit Escape Respirators
Younghwan Park1, Jahyun Kim1, Seunghyuck Chi1
1Department of Chemical and Biomolecular Engineering (BK21 Four), Korea Advanced Institute of Science and Technology (KAIST), Daejeon 34141, Republic of Korea.
Abstract:
In emergencies involving oxygen deficiency or exposure to toxic gases, closed-circuit escape respirators (CCERs) provide prompt and reliable respiratory protection, enabling safe escape from hazardous environments. These devices utilize a self-contained system that recycles exhaled breath by scrubbing CO2 and replenishing O2. CCERs require efficient CO2 adsorbents, as excessive CO2 accumulation from exhalation can lead to hypercapnia, causing dizziness, confusion, or even loss of consciousness. This study demonstrates that 1,2-epoxybutane-functionalized polyethylenimine supported on gamma alumina (EB-PEI/γ-Al2O3) is a very promising CO2 adsorbent for CCERs, significantly outperforming the conventionally used soda lime. By controlling 1,2-epoxybutane functionalization, the heat of CO2 adsorption can be precisely tuned, enabling the adsorbent to efficiently capture CO2 from exhaled breath (5% CO2 and 3% H2O) while minimally adsorbing CO2 from ambient air (400 ppm of CO2 and 1.5% H2O). This desirable CO2 adsorption window allows the CCER device to be stored long-term under ambient conditions without cumbersome airtight packaging and enables the CO2-saturated adsorbent to be regenerated through simple air exposure at room temperature. The adsorbent also exhibits remarkably faster CO2 adsorption kinetics and generates less heat and moisture compared to soda lime, thereby enhancing user comfort and safety.
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