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Case Studies for Dangerous Dust Explosions in South Korea during Recent Years

Author

Listed:
  • Seonggyu Pak

    (Korea Occupational Safety and Health Agency, Major Accident Prevention Center in Chungju, 85 Daerimro, Chungju, Chungbuk 27477, Korea
    These authors contributed equally to this work.)

  • Seongho Jung

    (Department of Environmental and Safety Engineering, Ajou University, Worldcupro 206, Yeongtong-gu, Suwon 16499, Korea
    These authors contributed equally to this work.)

  • Changhyun Roh

    (Decommissioning Technology Research Division, Korea Atomic Energy Research Institute (KAERI), 989-111 Daedukdaero, Yuseong, Daejeon 34057, Korea
    Advanced Radiation Technology Institute (ARTI), Korea Atomic Energy Research Institute (KAERI), Jeonbuk 56212, Korea
    Quantum Energy Chemical Engineering, University of Science and Technology, 217, Gajeong-ro, Yuseong-gu, Daejeon 34113, Korea)

  • Chankyu Kang

    (Ministry of Labor and Employment, Chemical Accident Prevention Division, 422 Hannuridae-ro, Sejong 30117, Korea)

Abstract

Despite recent extensive research and technical development to prevent and mitigate dust explosions, processes that produce and handle combustible materials in the form of powders and dusts, either as a main product or as an undesired by-product, have become a constant dust explosion threat as they become more sophisticated and complicated. This study analyzed the characteristics of 53 dust explosions that occurred in South Korea over the last 30 years, and investigated the differences of dust explosions that happened in various countries, such as Japan, the United States, the United Kingdom, and France. In addition, case studies showed the severity of dust explosions occurring in South Korea. Through the special focus on the three most recent years of dust explosions, the causes and processes of the accidents were identified. Analyses of dust explosions in South Korea show that they were mainly caused by organic matter and metal, and, unfortunately, dust explosions occurred repeatedly during grinding, mixing, and injection of powder materials into facilities. No reported accidents occurred during the production processes of wood or paper during the last three years. Taking these characteristics into account, effective ways to prevent or mitigate dust explosions at workplaces where many dust explosions occurred were suggested.

Suggested Citation

  • Seonggyu Pak & Seongho Jung & Changhyun Roh & Chankyu Kang, 2019. "Case Studies for Dangerous Dust Explosions in South Korea during Recent Years," Sustainability, MDPI, vol. 11(18), pages 1-13, September.
  • Handle: RePEc:gam:jsusta:v:11:y:2019:i:18:p:4888-:d:264788
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    Citations

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    Cited by:

    1. Marzena Półka & Szymon Ptak, 2019. "Preventing Air Pollution Connected to the Explosion of Different Types of Flours in Dedicated Storage and Transportation Systems," Sustainability, MDPI, vol. 11(24), pages 1-13, December.
    2. Yangyong Wu & Quanmin Xie & Chaomin Mu, 2023. "Sensitivity Analysis of Factors Influencing the Blast Resistance of Reinforced Concrete Columns Based on Grey Relation Degree," Sustainability, MDPI, vol. 15(16), pages 1-21, August.
    3. Bogdan Saletnik & Marcin Bajcar & Aneta Saletnik & Grzegorz Zaguła & Czesław Puchalski, 2021. "Effect of the Pyrolysis Process Applied to Waste Branches Biomass from Fruit Trees on the Calorific Value of the Biochar and Dust Explosivity," Energies, MDPI, vol. 14(16), pages 1-18, August.

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