• Title/Summary/Keyword: 위험유해물질

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Experiment and Simulation of Acoustic Detection for the Substitute for Sunken Hazardous and Noxious Substances Using the High Frequency Active Sonar (고주파 능동소나를 이용한 저층 침적 위험유해물질 대체물질 음향 탐지 실험 및 모의)

  • Han, Dong-Gyun;Seo, Him Chan;Choi, Jee Woong;Lee, Moonjin
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.24 no.4
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    • pp.459-466
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    • 2018
  • Hazardous and Noxious Substances (HNS) are defined as substances that are likely to create a significant impact on human health and marine ecosystem when they are released into the marine environment. Recently, as the volume of HNS transported by ships increases, the rate of leakage accidents also increases. Therefore, research should be conducted to control and monitor sunken materials from the viewpoint of technology development for hazardous material leakage accident response. In this paper, acoustic detection experiments were carried out using HNS substitute materials in order to confirm the possibility of acoustic detection of sunken HNS on the sediment. The castor oil, which has a similar acoustic impedance with chloroform, is used as a substitute. 200 kHz high frequency signals were used to discriminate the reflected signals and measure reflection loss from the interface between water and castor oil. The reflection loss measured is in good agreement with the modeling results, showing a possibility of acoustic detection for sunken HNS.

Matching-Table-Construction of Hazardous Meterial and Coding Development (위험물 매칭테이블 구축 및 코드화 방안)

  • An, Chan-Gi;Jeong, Seong-Bong;Park, Jong-Seo;Jang, Seong-Yong
    • Proceedings of the Safety Management and Science Conference
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    • 2012.04a
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    • pp.435-446
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    • 2012
  • 생활을 향상시키고 개선하기 위해 화학물질은 전 세계적으로 널리 이용 되고 있고, 또한 국내에는 38,000여종의 화학물질이 유통되고 있다. 그러나 화학물질은 그 이점에도 불구하고 사람이나 환경에 유해 영향을 가져올 가능성이 있어 위험물안전관리법에서는 3,000여종을 위험물로 분류하여 규제하고 있다. 위험물에 관련하여 유해화학물질관리법, 위험물안전관리법, 고압가스안전관리법, 총포 도검 화약류단속법, 원자력 진흥법, 농약관리법 등에서 개별적으로 규정하고 분류하고 있어 위험물질에 대한 표지사항이 해당 부처에 따라 상이하여 혼란을 야기하고 있고, 위험물에 대한 품목 및 품명의 고정으로 인하여 새롭게 생성된 위험물질에 대해 적용하는 데 문제점이 있다. 이에 의해 위험물질을 개별법에 따라 관리함으로써 중복된 위험물질 분류 및 관리의 문제가 있으며, 위험물질 분류에 있어서 위험물질에 따라 수송수단이 상이함에도 불구하고 수송수단별(도로, 철도, 해운, 항공) 위험물질에 대한 세분화된 자료가 부족하다. 따라서 수송관점에서 표준화된 위험물 물질정보의 분류와 코드화 방안개발이 필요하다. 본 연구는 국내 외 문헌 검토 및 위험물에 관련된 법제도 비교를 통하여 위험물 수송관리체계 정비방안과 위험물 수송사고의 문제점을 도출하고 기존의 위험물 분류체계에서 운송관점에서의 위험물 매칭테이블을 구축하고 신속한 사고대응을 위한 위험물질별 코드화 방안을 제안하도록 하겠다.

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Implementation of intelligent containers and cleaning robot to prevent container safety accidents (컨테이너 안전사고 방지 위한 지능형 컨테이너 및 청소 로봇 구현)

  • Jo, Hyeong-Jun;Jeong, Min-Hwan;Kim, In-Soo
    • Proceedings of the Korea Information Processing Society Conference
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    • 2022.11a
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    • pp.1044-1046
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    • 2022
  • '22년 중대재해처벌법과 항만안전특별법이 본격 시행되었다. 이에 대비하기 위하여 본 논문에서는 위험물 컨테이너에서 발생하는 안전사고를 사전에 방지하는 지능형 컨테이너 및 청소 로봇을 제안한다. 지능형 컨테이너 및 청소 로봇은 다음과 같은 기능을 수행한다. 첫째, 유해물질 감지 센서와 산소 센서 등을 통해 컨테이너 상태를 실시간으로 관리한다. 둘째, 유해물질 유출 및 산소 농도가 부족한 경우 위험 컨테이너로 변경 관리한다. 셋째, 컨테이너 내부 유해물질 청소를 위해 로봇을 호출하고 지능형 청소 로봇은 방제약품과 흡착포를 통해 컨테이너 내부를 청소한다. 넷째, 위험 컨테이너는 자동문 개폐관리 기능을 통해 유해물질 청소 완료 전까지 문을 폐쇄하여 안전사고를 방지한다. 본 논문은 제시한 기능을 통해 위험물 컨테이너에서 발생하는 작업자 질식사 등의 사고를 감소시키는 것을 목표로 한다.

Case Study on the Effluent Guidelines of Foreign Cases for the Development of Hazardous Noxious Substances (HNS) from Marine Industrial Facilities Management Guidelines, Korea: Focusing on the US EPA Guidelines (국내 해양산업시설의 위험유해물질 배출 관리 지침개발을 위한 국외 사례 검토: US EPA 배출지침을 중심으로)

  • Ki-young Choi;Chang-joon Kim;Young-Il Kim;Won-Soo Kang;Moonjin Lee
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.28 no.spc
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    • pp.44-49
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    • 2022
  • It is necessary to establish a marine environment management system in Korea for hazardous noxious substances (HNS) effluent from marine industrial facilities because the Marine Environment Management Act primarily focuses on pollution control from vessels and offshore man-made structures. In this study, we investigated the effluent guidelines of foreign cases focusing on the US Environmental Protection Agency (US EPA), which provides detailed information on the action levels and establishing principles for the industrial wastewater discharge of HNS. Based on the review, we also considered appropriate options for establishing new guidelines for Korea.

HNS behavior modelling for atmospheric and oceanic dispersion model (위험유해물질 대기 해양 확산모델을 위한 물질 거동특성 모델링)

  • Lee, Moonjin;Park, Mi-Ok;Jung, Jung-Yeul;Kang, Yong Q.
    • Proceedings of KOSOMES biannual meeting
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    • 2017.11a
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    • pp.157-157
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    • 2017
  • 해상으로 운송되는 위험유해물질(HNS, Hazardous and Noxious Substance)은 6,000여종 이상으로 많은 종류를 포함하고 있으므로, 유출시 대응전략 수립을 위한 HNS 거동 및 위험반경 예측을 결정론적으로 제시하기 어렵다. HNS 거동예측에서는 예측의 신속성과 효율성을 고려하여 차이가 미미한 모든 종류의 HNS 특성을 모두 고려하는 대신에 거동에 크게 영향을 미칠 수 있는 특성들에 초점을 맞쳐 대표적인 거동예측 모델을 개발하여 적용할 필요가 있다. 본 연구에서는 HNS를 기체상, 액체상, 고체상 등 크게 3분류로 구분하고, 각각의 분류별 거동특성 모델링을 연구하였다. 물질 특성별 거동특성은 증기압, 용해도, 밀도 등을 고려하였으며, 각각의 변수에 따른 증발, 혼?, 침강 등의 거동을 모델링하였다. 물질의 거동특성 모델링은 대기 해양 확산모델의 계산에서 대기중 확산, 수중 확산, 해저면 침적 등을 결정하는 과정으로 활용된다.

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The Study for Hazardous Material Incidents in Korea

  • Kim, Geun-Young;Il, James E. Moore
    • Journal of the Korean Society of Hazard Mitigation
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    • v.9 no.1
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    • pp.91-97
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    • 2009
  • Hazardous material (HazMat) is the material or substance that poses an unreasonable risk to human safety and health, and to property when transported in gases, solids, and liquids of all sizes. When HazMats are improperly released, they have potential to harm humans, property, or the environment to be considered hazardous, resulting in human-caused disasters. As the Korean economy has advanced, the use of HazMats has increased. And, the total number and the impacts of HazMat incidents have grown up. It increases the risk of HazMat incidents. When many goods of HazMats are transported from supply points to demand places, it is important to know what the types and characteristics of HazMat incidents are in terms of disaster management. The objectives of this research are: (1) to investigate types and characteristics of HazMats that generate HazMat incidents in Korea, and (2) to analyze time-series trends of HazMat incidents in terms of facilities and/or transportation. Statistical analysis methods including frequency analysis or analysis of category data are applied to examine the significance of difference in HazMat incidents.

Identifying Characteristics of Incidents at Hazardous Material Facilities

  • Kim, Geun-Young;Kim, Sang-Won;Won, Jai-Mu
    • Journal of the Korean Society of Hazard Mitigation
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    • v.9 no.6
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    • pp.51-56
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    • 2009
  • Safety and quality assessment systems are very important in manufacture, storage, transportation, and handling of hazardous materials(hazmat) to prevent hazmat disasters. At present, hazardous materials exist everywhere in our daily lives with various forms of plastics, household products of cleaning and washing detergents, fertilizers or petroleum-related products. However, hazardous materials are dangerous substances when they are released to human or environment. Hazardous materials become very widely used substances in the age of oil-based industrial economy. The Korean Ministry of Environment (KMOE) describes about one hundred thousand types of chemicals are produced and used worldwide. Over four hundred new chemicals are introduced in every year. A crucial question for the Korean hazardous material management may have been raised: Will you be safe from hazardous material incidents? The gas leak disaster at Union Carbide's Bhopal, India in 1984 that made over 6,400 people killed and 30,000 to 40,000 people seriously injured is the representative case for the safety of hazmat. Korea becomes vulnerable to hazmat disaster due to the development of high-tech industry. Thus, the risk assessment system is required to Korea for transferring abandoned hazmat management systems to self-correcting safety systems. This research analyzed characteristics of various hazmat incidents applying statistical analysis methods including frequency analysis or analysis of category data to hazmat incidents for ten years. All of three analyses of category data indicate the significance of causality between hazmat incident site groups and seasons, regional groups, and incident casualty groups.

A Basic Study On the Development of the Computerized Response Aid System for HNS (HNS 방제정보지원시스템 개발에 관한 기초 연구)

  • Im Chang-Ho;No Chang-Gyun
    • Proceedings of the Korean Institute of Navigation and Port Research Conference
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    • 2006.06b
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    • pp.215-220
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    • 2006
  • The oil on board is a major source of sea pollutions. Recently, according to increasement of Hazardous and noxious substances carrying on board. Our greatest concern is how to response HNS spread pollution, addition to response oil spill pollution. This is first aim how can take a speedy and precise response. So introduce to development of the computerized response aid system for HNS.

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Development of Response Scenario for a Simulated HNS Spill Incident (위험유해물질 유출사고 대응을 위한 가상시나리오 개발)

  • Lee, Moonjin;Oh, Sangwoo
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.20 no.6
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    • pp.677-684
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    • 2014
  • In response to possible HNS (Hazardous and Noxious Substance) spill accident, HNS spill accident scenario and response scenario were developed. The accident area listed in scenarios is the coastal area of Busan, and scenario for possible accident in the designated area and strategies to respond the accident were developed, respectively. The scenario for accident was developed by designating HNS spill according to risk evaluation of HNS and analysis of HNS spill probability along the coastal area of Busan, and then estimating possible and potential impact from the accident. The scenario for response has been suggested as a systematical responding operations in order to effectively reduce the estimated impact from the accident. The possible HNS spill accident on the seas around Busan, has been designated by the spillage of 1,000ton of xylene due to collision accident in Gamcheon Port, and the possible impacts occurred by the accident has been simulated with the help of the atmospheric and oceanic dispersion model of xylene. In the responding scenario for the accident, a phased strategies regarding emergency rescue of peoples, protection and recovery of xylene, protective measures for the responders, and post management of the accident have been suggested.