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논문 기본 정보

자료유형
학술저널
저자정보
Cho, Il-Hoon (Korea Atomic Energy Research Institute) Park, Guen-Il (Korea Atomic Energy Research Institute) Kim, Joon-Hyung (Korea Atomic Energy Research Institute) Hwang, Taek-Sung (Chungnam National University) Lee, Mi-Kyoung (Chungnam National University)
저널정보
한국탄소학회 Carbon science Carbon science 제2권 제2호
발행연도
2001.1
수록면
113 - 119 (7page)

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The advanced method for $CO_2$capture is currently one of the most important environmental issues in worldwide and it is therefore necessary to have available technologies, which minimize the discharge of $CO_2$ including Carbon-14 from nuclear facilities into the atmosphere. A key aspect of this work is to provide the technically principal data required to improve a $CO_2$ removal system for the utilization of regenerative sorbent use, specifically include suggestions regarding its modified column design (parallel dual-bed assembly), stop-restart operation and the economic feasibility of sorbent use. The removal performance of soda lime and the effects of relative humidity (RH) and packing bed-depth (BD) on $CO_2$ removal were investigated. In a single-bed, it revealed that the utilization of soda lime for $CO_2$ removal at line velocity of 13 cm/sec and bed depth of 12 cm increased with the increased relative humidity up to 85%. However, in the parallel dual-bed assembly applied with the stop-restart operation, a maximum utilization rate of soda lime for $CO_2$ removal was obtained even at 55% of RH and 8 cm of BD, specifically the utilization rate of soda lime by using this $CO_2$ removal assembly was about two-fold superior to that in a single-bed.

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