• 제목/요약/키워드: Radiological Terrorism

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방사능 폭발물의 X-ray 영상판독에 관한 연구 (A Study on the X-ray Image Reading of Radiological Dispersal Device)

  • 정근우;박경진
    • 한국산업융합학회 논문집
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    • 제27권2_2호
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    • pp.437-443
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    • 2024
  • The purpose of radiological Dispersal Device(RDD) is to kill people by explosives and to cause radiation exposure by dispersing radioactive materials. And It is a form of explosive that combines radioactive materials such as Co-60 and Ir-192 with improvised explosives. In this study, we tested and evaluated whether it was possible to read the internal structure of an explosive using X-rays in a radioactive explosive situation. The improvised explosive device was manufactured using 2 lb of model TNT explosives, one practice detonator, one 9V battery, and a timer switch in a leather briefcase measuring 41×35×10 cm3. The radioactive material used was the Co-60 source used in the low-level gamma ray irradiation device operated at the Advanced Radiation Research Institute of the Korea Atomic Energy Research Institute. The radiation dose used was gamma ray energy of 1.17 MeV and 1.33 MeV from a Co-60 source of 2208 Ci. The dose rates are divided into 0.5, 1, 2, and 4 Gy/h, and the exposure time was divided into 1, 3, 5, and 10 minutes. Co-60 source was mixed with the manufactured explosive and X-ray image reading was performed. As a result of the experiment, the X-ray image appeared black in all conditions divided by dose rate and time, and it was impossible to confirm the internal structure of the explosive. This is because γ-rays emitted from radioactive explosives have higher energy and stronger penetrating power than X-rays, so it is believed that imaging using X-rays is limited By blackening the film. The results of this study are expected to be used as basic data for research and development of X-ray imaging that can read the internal structure of explosives in radioactive explosive situations.

핵테러리즘과 세계핵테러방지구상(GICNT): 위협, 대응 및 한국에 대한 함의 (Nuclear Terrorism and Global Initiative to Combat Nuclear Terrorism(GICNT): Threats, Responses and Implications for Korea)

  • 윤태영
    • 시큐리티연구
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    • 제26호
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    • pp.29-58
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    • 2011
  • 2001년 9/11 테러 이후 국제사회에 최대 위협중의 하나인 테러리즘과 핵무기 및 핵물질의 결합 위험성에 대한 경고가 계속되고 있다. 이 연구의 목적은 9/11 테러 이후 증대하는 핵테러리즘 위협에 대한 국제 다자적 대응체제인 세계핵테러방지구상(GICNT)의 목적, 원칙, 특성, 활동, 발전 저해요인 및 발전방향 등을 살펴보고 한국 정책에 대한 함의를 도출하는데 있다. 국제적 핵테러리즘 대응을 위해 GICNT는 포괄적 전략으로 (1) 전 세계 핵시설의 방호, (2) 초국가적 비국가 테러네트워크의 핵테러 책동 대처, (3) 핵보유국의 핵무기와 핵물질의 테러집단에 이전 예방과 억제, (4) 핵밀수 차단 등을 추구해야 할 것이다. 또한 GICNT 활동의 실효적인 국제협력 증진을 위해 시급히 시행해야할 조치들로는 (1) 공동위협 브리핑을 통한 핵테러리즘 위협에 대한 실제적인 가능성 분석 평가, (2) 핵테러리즘 훈련 실시, (3) 신속한 핵안보 체제 평가 실시, (4) 내 외부 위협에 대한 실제적인 핵안보 능력 시험, (5) 핵테러리즘 관련 위협과 사건에 대한 데이터베이스 구축과 공유 등이 있다. 한국의 입장에서 북한 핵관련 무기, 물질 및 기술의 테러집단에 이전되는 문제와 국제테러단체 또는 북한의 한국 핵시설 공격 및 핵장치를 이용한 테러행위 등이 주요 우려사항이다. 이러한 상황에서 한국은 세계 5위의 원자력 발전국으로서 GICNT와 핵테러 관련 국제 협약에 근거해 물리적 방호체제 구축과 핵테러리즘 대응태세를 강화하고 있다. 향후 핵테러리즘을 포괄적이고 효과적으로 예방하기위해서는 공항 항만, 주요교통 요충지점 및 국가 핵심기반시설 등에 핵물질 탐지 검색시스템과 이동형 탐지장비를 강화해야할 것이다. 아울러 대응체계를 강화하기위해 실효적인 위기관리 매뉴얼의 작성과 주요 핵테러 유형에 대한 대테러 훈련과 작전태세를 강화해야할 것이다. 재앙적인 결과를 초래하는 핵테러리즘에 대한 예방 탐지 대응을 위해서는 국내적 관련 법 제도 체제 정비뿐만 아니라 국제협력 강화는 무엇보다 중요하다.

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Radiation Detection System for Prevention of Illicit Trafficking of Nuclear and Radioactive Materials

  • Kwak, Sung-Woo;Chang, Sung-Soon;Yoo, Ho-Sik
    • Journal of Radiation Protection and Research
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    • 제35권4호
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    • pp.167-171
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    • 2010
  • Fixed radiation portal monitors (RPMs) deployed at border, seaport, airport and key traffic checkpoints have played an important role in preventing the illicit trafficking and transport of nuclear and radioactive materials. However, the RPM is usually large and heavy and can't easily be moved to different locations. These reasons motivate us to develop a mobile radiation detection system. The objective of this paper is to report our experience on developing the mobile radiation detection system for search and detection of nuclear and radioactive materials during road transport. Field tests to characterize the developed detection system were performed at various speeds and distances between the radioactive isotope (RI) transporting car and the measurement car. Results of measurements and detection limits of our system are described in this paper. The mobile radiation detection system developed should contribute to defending public's health and safety and the environment against nuclear and radiological terrorism by detecting nuclear or radioactive material hidden illegally in a vehicle.

Plant Extracts and Plant-Derived Compounds: Promising Players in Countermeasure Strategy Against Radiological Exposure: A Review

  • Kma, Lakhan
    • Asian Pacific Journal of Cancer Prevention
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    • 제15권6호
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    • pp.2405-2425
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    • 2014
  • Radiation exposure leads to several pathophysiological conditions, including oxidative damage, inflammation and fibrosis, thereby affecting the survival of organisms. This review explores the radiation countermeasure properties of fourteen (14) plant extracts or plant-derived compounds against these cellular manifestations. It was aimed at evaluating the possible role of plants or its constituents in radiation countermeasure strategy. All the 14 plant extracts or compounds derived from it and considered in this review have shown some radioprotection in different in vivo, ex-vivo and or in vitro models of radiological injury. However, few have demonstrated advantages over the others. C. majus possessing antioxidant, anti-inflammatory and immunomodulatory effects appears to be promising in radioprotection. Its crude extracts as well as various alkaloids and flavonoids derived from it, have shown to enhance survival rate in irradiated mice. Similarly, curcumin with its antioxidant and the ability to ameliorate late effect of radiation exposure, combined with improvement in survival in experimental animal following irradiation, makes it another probable candidate against radiological injury. Furthermore, the extracts of P. hexandrum and P. kurroa in combine treatment regime, M. piperita, E. officinalis, A. sinensis, nutmeg, genistein and ginsan warrants further studies on their radioprotective potentials. However, one that has received a lot of attention is the dietary flaxseed. The scavenging ability against radiation-induced free radicals, prevention of radiation-induced lipid peroxidation, reduction in radiation cachexia, level of inflammatory cytokines and fibrosis, are some of the remarkable characteristics of flaxseed in animal models of radiation injury. While countering the harmful effects of radiation exposure, it has shown its ability to enhance survival rate in experimental animals. Further, flaxseed has been tested and found to be equally effective when administered before or after irradiation, and against low doses (${\leq}5Gy$) to the whole body or high doses (12-13.5 Gy) to the whole thorax. This is particularly relevant since apart from the possibility of using it in pre-conditioning regime in radiotherapy, it could also be used during nuclear plant leakage/accidents and radiological terrorism, which are not pre-determined scenarios. However, considering the infancy of the field of plant-based radioprotectors, all the above-mentioned plant extracts/plant-derived compounds deserves further stringent study in different models of radiation injury.

스마트칩 카드을 이용한 광 자극 발광 특성 연구 (A Study on Retrospective of External Radiation Exposure Dose by Optically Stimulated Luminescence of Smart Chip Card)

  • 박상원;유세종
    • 대한방사선기술학회지:방사선기술과학
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    • 제42권5호
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    • pp.379-385
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    • 2019
  • Radiation is used for various purposes such as cancer therapy, research of industrial and drugs. However, in case of radiation accidents such as terrorism, collapsing nuclear plant by natural disasters like Fukushima in 2011, very high radiation does expose to human and could lead to death. For this reason, many people are concerning about radiation exposures. Therefore, assessment and research of retrospective radiation dose to human by various path is an necessary task to be continuously developed. Radiation exposure for workers in radiation fields can be generally measured using a personal exposure dosimeter such as TLD, OSLD. However, general people can't be measured radiation doses when they are exposed to radiation. And even if radiation fields workers, when they do not in possession personal dosimeter, they also can't be measured exposure dose immediately. In this study, we conduct retrospective research on reconstruction of dose after exposure by using smart chip card of personal items through Optically Stimulated Luminescence (OSL). The OSL signal of smart chip card shows linear response from 0.06 Gy to 15 Gy and results of fading rate 45 %, 48% for 24 and 48 hours due to the natural emission of radiation in sample, respectively. The minimum detectable limit (MDD) was 0.38 mGy. This values are expected to use as correction values for reconstruction of exposure dose.

국가안보측면으로서의 인공강우기술 고찰 (Study on Consideration of Artificial Rain Technology in Aspect of National Security)

  • 최기남;이선제
    • 융합보안논문지
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    • 제12권2호
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    • pp.99-106
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    • 2012
  • 2010년 3월 11일 대한민국 동해를 건너 위치한 일본에서 강진과 해일로 인하여 후쿠시마원전이 중단되고 폭발하여 방사능물질이 누출되었다. 한 국가에서 발생한 사고지만 누출된 방사능 물질은 해류와 기류를 타고 전 세계에 확산되었다. 국내에도 사고 이후 방사능비가 내린다는 공포심에 혼란이 있었고, 사고 발생 1년이 지나도 방사능오염에 대한 문제는 해결되지 않고 있다. 즉 이웃나라의 원전사고는 국내에도 큰 위협이 되는데 일본 뿐 만 아니라 서해 건너 중국해변에도 원자력발전소가 위치하고 있다. 이웃나라의 원전사고 위협이외 군사적 대치를 하고 있는 북한은 세계3위의 생화학무기 보유국이며 2010년 11월에는 연평도 포격도발을 하는 등 언제든 남한에 생화학물질을 살포 할 수 있는 상황이다. 본 연구는 이러한 위협에 대응하는 전략으로 기상조절기술인 인공강우기술을 접목해 보았다. 원전사고시 방사능물질과 북한의 생화학무기는 기상조건에 따라 농도가 달라 질 수 있으므로 인공강우기술만으로 완벽하게 위협을 제거할 수 없지만, 심리적 측면과 피해저감을 위한 방법으로 시도해 볼 가치가 있다. 국민안전확보를 위한 국가의 안보측면으로서 인공강우기술을 사용하기 위해서는 ADD와 같은 연구기관에서 상시적이고 적극적으로 기술연구개발을 해야 할 것이다.