전기화학적 이산화탄소 포집 기술 개발
This study presents the development of an electrochemical carbon capture technology for direct air capture (DAC). The membrane-electrode assembly (MEA) design was optimized through the utilization of various commercial polymer electrolyte membranes and catalysts. Carbon capture ratio was evaluated u...
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Published in | 한국수소 및 신에너지학회 논문집 Vol. 35; no. 6; pp. 617 - 623 |
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Main Authors | , , , , |
Format | Journal Article |
Language | Korean |
Published |
한국수소및신에너지학회
2024
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Subjects | |
Online Access | Get full text |
ISSN | 1738-7264 2288-7407 |
DOI | 10.7316/JHNE.2024.35.6.617 |
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Abstract | This study presents the development of an electrochemical carbon capture technology for direct air capture (DAC). The membrane-electrode assembly (MEA) design was optimized through the utilization of various commercial polymer electrolyte membranes and catalysts. Carbon capture ratio was evaluated using the fabricated MEA. As a result, we were able to demonstrate the feasibility of electrochemical carbon capture technology by showing a carbon capture ratio of approximately 87% in a simulated air gas containing 398 ppm of carbon dioxide. |
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AbstractList | This study presents the development of an electrochemical carbon capture technology for direct air capture (DAC). The membrane-electrode assembly (MEA) design was optimized through the utilization of various commercial polymer electrolyte membranes and catalysts. Carbon capture ratio was evaluated using the fabricated MEA. As a result, we were able to demonstrate the feasibility of electrochemical carbon capture technology by showing a carbon capture ratio of approximately 87% in a simulated air gas containing 398 ppm of carbon dioxide. KCI Citation Count: 0 This study presents the development of an electrochemical carbon capture technology for direct air capture (DAC). The membrane-electrode assembly (MEA) design was optimized through the utilization of various commercial polymer electrolyte membranes and catalysts. Carbon capture ratio was evaluated using the fabricated MEA. As a result, we were able to demonstrate the feasibility of electrochemical carbon capture technology by showing a carbon capture ratio of approximately 87% in a simulated air gas containing 398 ppm of carbon dioxide. |
Author | 김선엽(SEONYEOB KIM) 이선엽(SUNYOUP LEE) 이동근(DONGKEUN LEE) 채지언(JI EON CHAE) 최지선(JISEON CHOI) |
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DocumentTitleAlternate | Development of Electrochemical Carbon Dioxide Capture Technology |
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Keywords | Carbon dioxide removal(이산화탄소 제거) Carbon capture(탄소 포집) Carbon dioxide separation(이산화탄소 분리) Direct air capture(직접 공기 포집) Electrochemical cell(전기화학셀) |
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PublicationTitle | 한국수소 및 신에너지학회 논문집 |
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Title | 전기화학적 이산화탄소 포집 기술 개발 |
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