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논문 기본 정보

자료유형
학술저널
저자정보
Lee, Ji Hyun (Creative Future Laboratory, KEPCO Research Institute) Kwak, NoSang (Creative Future Laboratory, KEPCO Research Institute) Niu, Hongwei (Beijing Key Laboratory of CO2 capture and Treatment, China Huaneng Group Clean Energy Institute) Wang, Jinyi (Beijing Key Laboratory of CO2 capture and Treatment, China Huaneng Group Clean Energy Institute) Wang, Shiqing (Beijing Key Laboratory of CO2 capture and Treatment, China Huaneng Group Clean Energy Institute) Shang, Hang (Beijing Key Laboratory of CO2 capture and Treatment, China Huaneng Group Clean Energy Institute) Gao, Shiwang (Beijing Key Laboratory of CO2 capture and Treatment, China Huaneng Group Clean Energy Institute)
저널정보
한국화학공학회 화학공학 화학공학 제58권 제1호
발행연도
2020.1
수록면
150 - 162 (13page)

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초록· 키워드

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The proprietary post-combustion $CO_2$ solvent (KoSol) developed by the Korea Electric Power Research Institute (KEPRI) was applied at the Shanghai Shidongkou $CO_2$ Capture Pilot Plant (China Huaneng CERI, capacity: 120,000 ton $CO_2$/yr) of the China Huaneng Group (CHNG) for performance evaluation. The key results of the pilot test and data on the South Korean/Chinese electric power market were used to calculate the predicted cost of $CO_2$ avoided upon deployment of $CO_2$ capture technology in commercial-scale coal-fired power plants. Sensitivity analysis was performed for the key factors. It is estimated that, in the case of South Korea, the calculated cost of $CO_2$ avoided for an 960 MW ultra-supercritical (USC) coal-fired power plant is approximately 35~44 USD/$tCO_2$ (excluding $CO_2$ transportation and storage costs). Conversely, applying the same technology to a 1,000 MW USC coal-fired power plant in Shanghai, China, results in a slightly lower cost (32~42 USD/$tCO_2$). This study confirms the importance of international cooperation that takes into consideration the geographical locations and the performance of $CO_2$ capture technology for the involved countries in the process of advancing the economic efficiency of large-scale CCS technology aimed to reduce greenhouse gases.

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