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    CO2 해양격리시스템의 기술·경제적 가능성평가 = Economic Feasibility Study for CO2 Ocean Sequestration

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    https://www.riss.kr/link?id=A104081388

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    The CO2 storage in geologic and oceanic reservoirs is considered to be one of the carbon management strategies for responding to global climate change. Ocean carbon sequestration is purposeful storage acceleration into the ocean of large amounts of carbon that would accumulate in the atmosphere and naturally enter the ocean over a longer timespan. Some technologies for CO2 ocean sequestrations have been developed as a nation project. However, CO2 ocean sequestrations are attractive because they have the advantage of vast capacity sequestration far away from industrial areas, and offer easier monitoring whereas less economic advantage has been indicated as one of the key barriers compared with CO2 geosphere sequestration, which is produced as a byproduct. In this paper, a conceptual design for CO2 ocean sequestration is introduced, and the preliminary examination is described. As a result, the CO2 price, US$ 24/t shows far away from the economics. The causes come from the expensive CO2 recovery cost and the low CO2 price. The expensive CO2 recovery cost is because too much electricity and water are consumed. In order to look for an economic balance point for CO2 ocean sequestration, NPV=0, it is increases the CO2 price. Finally 60.4$ per ton is found to be the balance price.
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    The CO2 storage in geologic and oceanic reservoirs is considered to be one of the carbon management strategies for responding to global climate change. Ocean carbon sequestration is purposeful storage acceleration into the ocean of large amounts of ca...

    The CO2 storage in geologic and oceanic reservoirs is considered to be one of the carbon management strategies for responding to global climate change. Ocean carbon sequestration is purposeful storage acceleration into the ocean of large amounts of carbon that would accumulate in the atmosphere and naturally enter the ocean over a longer timespan. Some technologies for CO2 ocean sequestrations have been developed as a nation project. However, CO2 ocean sequestrations are attractive because they have the advantage of vast capacity sequestration far away from industrial areas, and offer easier monitoring whereas less economic advantage has been indicated as one of the key barriers compared with CO2 geosphere sequestration, which is produced as a byproduct. In this paper, a conceptual design for CO2 ocean sequestration is introduced, and the preliminary examination is described. As a result, the CO2 price, US$ 24/t shows far away from the economics. The causes come from the expensive CO2 recovery cost and the low CO2 price. The expensive CO2 recovery cost is because too much electricity and water are consumed. In order to look for an economic balance point for CO2 ocean sequestration, NPV=0, it is increases the CO2 price. Finally 60.4$ per ton is found to be the balance price.

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    참고문헌 (Reference)

    1 "유형고정자산 내용년수표" 425-, 1999

    2 "液化炭素ガスの貯藏設備コスト" (株)日本酸素. 2004

    3 "地球溫暖化對策技術開發に する調査(II)," 329-, 2003

    4 "化學吸收式回收技術の評價" 電力中央硏究所. 32-56, 1995

    5 "二酸化炭素の炭層固定化技術に する基礎調査" 新エネルギ一産業技術總合開發機構. 2002

    6 "二酸化炭素の海洋隔離技術に する基礎調査 NEDO-GET-9407" 新エネルギ一産業技術總合開發機構 200-, 1995

    7 "パイプラインの直徑設計" 2003

    8 "ハイブリッドシステム化による海洋隔離と深海底資源開發成立の可能性評價" 日本造船學會 2005

    9 "コバルトリッチクラストのポテンシャル比較手法の開發" 118 : 641-649, 2002

    10 "Uncertainties in CO2 capture and sequestration costs" 2 : 1119-1124, 2003

    1 "유형고정자산 내용년수표" 425-, 1999

    2 "液化炭素ガスの貯藏設備コスト" (株)日本酸素. 2004

    3 "地球溫暖化對策技術開發に する調査(II)," 329-, 2003

    4 "化學吸收式回收技術の評價" 電力中央硏究所. 32-56, 1995

    5 "二酸化炭素の炭層固定化技術に する基礎調査" 新エネルギ一産業技術總合開發機構. 2002

    6 "二酸化炭素の海洋隔離技術に する基礎調査 NEDO-GET-9407" 新エネルギ一産業技術總合開發機構 200-, 1995

    7 "パイプラインの直徑設計" 2003

    8 "ハイブリッドシステム化による海洋隔離と深海底資源開發成立の可能性評價" 日本造船學會 2005

    9 "コバルトリッチクラストのポテンシャル比較手法の開發" 118 : 641-649, 2002

    10 "Uncertainties in CO2 capture and sequestration costs" 2 : 1119-1124, 2003

    11 "The second phase of Japanese R&D program for CO2 ocean sequestration" 1 : 733-738, 2003

    12 "The economic viability of a four-metal pioneer deep ocean mining venture" Texas A&M University College Station 201-, 1983

    13 "Putting carbon back in the ground" IEA Greenhouse Gas R&D Programme 26-, 2001

    14 "Proposal of self sinking CO2 sending system" 269-274, 1999

    15 "Potential for improvement in gasification combined cycle power generation with CO2 capture" IEA Greenhouse Gas R&D Programme 2003

    16 "Ocean dispersion of CO2 from a moving ship source" Cairns 1 : 457-462, 2000

    17 "Mining deep ocean manganese nodules: Description and economic analysis of a potential venture" 19-, 1985

    18 "Mass transfer and structure of bubby flows in a system of CO2 disposal into the ocean by a gas-lift column" 54 : 4945-4951, 1999

    19 "Large CO2 sinks: Their role in the mitigation of greenhouse gases from an international, national (Canadian) and provincial (Alberta) Perspective." 61 : 209-227, 1998

    20 "Japanese R&D project for CO2 geological sequestration" 1 : 317-320, 2003

    21 "In situ experiments of cold CO2 release in mid-depth" 1 : 739-745, 2003

    22 "Geological storage research" 5 (5): 19-27, 2000

    23 "Geological characterization of CO2 storage site lessons from sleipner.northern North Sea" 1 : 321-325, 2003

    24 "Fossil fuels without CO2 emissions" 282 : 1053-1054, 1998

    25 "Evidence for enhanced mixing over rough topography in the abyssal ocean" 403 (403): 179-182, 2000

    26 "Economics of CO2 sequestration in coalbed methane reservoirs" Calgary 2000

    27 "Droplets of dry ice and cold liquid CO2 for self transport of CO2 to large depth" Stavanger 1 : 498-505, 2001

    28 "Direct experiments on the ocean disposal of fossil fuel CO2" 284 : 943-945, 1999

    29 "Dilution of released CO2 in mid ocean depth by moving ship" Interlaken, 175-180, 1999

    30 "Design factors in gas-lift advanced dissolution system for CO2 sequestration into the ocean" 56 : 6205-6210, 2001

    31 "Department of Energy" Department of Energy 23-, 2002

    32 "Deep ocean mining reconsidered a study of the manganese nodule deposits in Cook Island" Szczecin 88-93, 2001

    33 "Deep coalbed methane in Alberta, Canada: A fuel resource with the potential of zero greenhouse gas emissions" 38 : 217-222, 1997

    34 "Coupling between mass transfer from dissolving bubbles and formation of bubble-surface wave" 56 : 6411-6417, 2001

    35 "Cost of CO2 recovery and transmission for EOR from boiler stack gas" Interlaken 229-234, 1999

    36 "Characteristics and performance of a deep-ocean disposal system for low-purity CO2 gas via gas lift effect" 15 : 285-292, 2001

    37 "Carbon capture and storage from fossil fuel use" 1 : 1-11, 2004

    38 "CO2 가스 해양격리시스템 연구개발 타당성 기획연구" 382-, 2004

    39 "CO2 sequestration at sea by gas-lift system of shallow injection and deep releasing" 34 : 4140-4145, 2000

    40 "A technical, economic and environmental assessment of amine-based carbon capture technology for power plant greenhouse gas control" 36 (36): 4467-4475, 2002

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    학술지 이력

    학술지 이력
    연월일 이력구분 이력상세 등재구분
    2023 평가 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
    2020-01-01 등재 등재학술지 유지 (해외등재 학술지 평가) KCI등재
    2014-03-31 학회명변경 한글명 : 한국해양연구원 -> 한국해양과학기술원
    영문명 : Korea Ocean Research and Development Institute -> Korea Institute of Ocean Science & Technology
    KCI등재
    2014-01-01 등재 SCOPUS 등재 (등재유지) KCI등재
    2011-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2009-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2007-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2005-06-28 학술지등록 한글명 : Ocean and Polar Research
    외국어명 : Ocean and Polar Research
    KCI등재
    2005-06-28 학술지등록 한글명 : Ocean Science Journal
    외국어명 : Ocean Science Journal
    KCI등재
    2005-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2002-07-01 등재 등재학술지 선정 (등재후보2차) KCI등재
    2000-01-01 등재 등재후보학술지 선정 (신규평가) KCI등재후보
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    학술지 인용정보

    학술지 인용정보
    기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
    2016 0.38 0.38 0.43
    KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
    0.39 0.35 0.749 0.1
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