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      알칼라인 수전해 설비에 내재된 위험요소가 사고에 미치는 영향 = Impact of Risk Factors Inherent in Alkaline Water Electrolysis on Accidents

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      https://www.riss.kr/link?id=A109321566

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      다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

      To achieve carbon neutrality, many countries and companies around the world have adopted hydrogen energy as a key energy source for the future. Major countries such as Europe, China, the United States, and Japan are already conducting large-scale empirical research and commercialization to secure hy-drogen production technology, a core technology of the hydrogen industry. Our government is pursuing large-scale R&D projects with related companies to se-cure water electrolysis technology, a core technology for the hydrogen industry. At present, for the development of domestic water electrolysis technology, it is important to increase the size of ​​production facilities and ensure safety. In this study, we seek to discover the risk factors inherent in alkaline water electrolysis equipment and analyze the extent of damage that will occur in the event of an accident due to these risk factors. Therefore, we would like to raise awareness of the importance of ensuring the safety of water electrolysis equipment.
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      To achieve carbon neutrality, many countries and companies around the world have adopted hydrogen energy as a key energy source for the future. Major countries such as Europe, China, the United States, and Japan are already conducting large-scale empi...

      To achieve carbon neutrality, many countries and companies around the world have adopted hydrogen energy as a key energy source for the future. Major countries such as Europe, China, the United States, and Japan are already conducting large-scale empirical research and commercialization to secure hy-drogen production technology, a core technology of the hydrogen industry. Our government is pursuing large-scale R&D projects with related companies to se-cure water electrolysis technology, a core technology for the hydrogen industry. At present, for the development of domestic water electrolysis technology, it is important to increase the size of ​​production facilities and ensure safety. In this study, we seek to discover the risk factors inherent in alkaline water electrolysis equipment and analyze the extent of damage that will occur in the event of an accident due to these risk factors. Therefore, we would like to raise awareness of the importance of ensuring the safety of water electrolysis equipment.

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      참고문헌 (Reference)

      1 Korea Occupational Safety and Health Agency (KOSHA), "Technical guidelines on accident damage prediction techniques" KOSHA

      2 J. H. Jung, "Safety analysis and evaluation of alkaline water electrolyzers coupled with the renewable energy sources" Seoul National University of Science & Technology 2023

      3 김현기 ; 서두현 ; 이광원 ; 김태훈 ; 홍성철, "Research on safety measures for design and operation of alkaline water electrolysis facility" 28 (28): 17-23, 2024

      4 장대진 ; 김서연 ; 이민철, "Property based quantitative risk assessment of hydrogen compared with methane, ethane, propane and butane" 46 (46): 103-114, 2022

      5 E. Kim, "General chemistry experiment" BooksHill 131-, 1999

      6 V. Schroeder, "Explosion characteristics of hydrogen-air and hydrogen-oxygen mixtures at elevated pressures" 2005

      7 V. J. Clancey, "Diagnostic features of explosion damage" 1972

      8 J. Brauns, "Alkaline water electrolysis powered by renewable energy : a review" 8 (8): 248-, 2020

      9 L. Jin, "Alkaline electrolysis for green hydrogen production: techno-economic analysis of temperature influence and control" 908-919, 2023

      10 김태헌 ; 최재욱 ; 조인록 ; 이정운, "A study on the development of safety standard through the risk assessment for fuel cell system applied to UAV" 35 (35): 56-65, 2024

      1 Korea Occupational Safety and Health Agency (KOSHA), "Technical guidelines on accident damage prediction techniques" KOSHA

      2 J. H. Jung, "Safety analysis and evaluation of alkaline water electrolyzers coupled with the renewable energy sources" Seoul National University of Science & Technology 2023

      3 김현기 ; 서두현 ; 이광원 ; 김태훈 ; 홍성철, "Research on safety measures for design and operation of alkaline water electrolysis facility" 28 (28): 17-23, 2024

      4 장대진 ; 김서연 ; 이민철, "Property based quantitative risk assessment of hydrogen compared with methane, ethane, propane and butane" 46 (46): 103-114, 2022

      5 E. Kim, "General chemistry experiment" BooksHill 131-, 1999

      6 V. Schroeder, "Explosion characteristics of hydrogen-air and hydrogen-oxygen mixtures at elevated pressures" 2005

      7 V. J. Clancey, "Diagnostic features of explosion damage" 1972

      8 J. Brauns, "Alkaline water electrolysis powered by renewable energy : a review" 8 (8): 248-, 2020

      9 L. Jin, "Alkaline electrolysis for green hydrogen production: techno-economic analysis of temperature influence and control" 908-919, 2023

      10 김태헌 ; 최재욱 ; 조인록 ; 이정운, "A study on the development of safety standard through the risk assessment for fuel cell system applied to UAV" 35 (35): 56-65, 2024

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