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Two decades of radiological accidents direct causes, roots causes and consequences

机译:二十年来的放射性事故直接原因,根本原因和后果

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Practically all Countries utilize radioisotopes in medicine, industry, agriculture and research. The extent to which ionizing radiation practices are employed varies considerably, depending largely upon social and economic conditions and the level of technical skills available in the country. An overview of the majority of practices and the associated hazards will be found in the Table IV to VII of this document. The practices in normal and abnormal operating conditions should follow the basic principles of radiation protection and the Safety of Radiation Sources, considering the IAEA Radiation Protection and the Safety of Radiation Sources, Safety Series 120 and the IAEA Recommendation of the Basic Safety Standards for Radiation Protection, Safety Series No 115. The Standards themselves underline the necessity to be able to predict the radiological consequences of emergency conditions and the investigations that should need to be done. This paper describes the major accidents that had happened in the last two decades, provides a methodology for analyses and gives a collection of lessons learned. This will help the Regulatory Authority to review the reasons of vulnerabilities, and to start a Radiation safety and Security Programme to introduce measurescapable to avoid the recurrence of similar events. Although a number of accidents with fatalities have caught the attention of the public in recent year, a safety record has accompanied the widespread use of radiation sources. However, the fact that accidents are uncommon should not give grounds for complacency. No radiological accident is acceptable. From a radiation safety and security of the sources standpoint, accident investigation is necessary to determine what happened, why, when, where and how it occurred and who was (were) involved and responsible. The investigation conclusion is an important process toward alertness and feedback to avoid careless attitudes by improving the comprehension of Safety Performance and Safety Culture. Accident investigation is the first step toward avoiding future injures and financial losses, by prevention of recur recurrence. On the other hand, accident investigation is also essential for the establishment of the responsibilities and liability for the consequences. This document discuss the main accidents that have happened in the last two decades, in terms of causes, consequences, similarities and lessons learned when sealed sources have been damaged, lost, stolen and abandoned. In considerable majority death and serious injuries were resulted from failures in the safety system for radiation sources and for the security of radioactive materials.
机译:几乎所有国家都在医学,工业,农业和研究中利用放射性同位素。电离辐射实践的采用程度差异很大,这在很大程度上取决于社会和经济条件以及该国可用的技术技能水平。本文档的表IV至VII中提供了大多数实践及其相关危害的概述。在正常和异常运行条件下的实践应遵循辐射防护和辐射源安全的基本原则,并考虑到IAEA辐射防护和辐射源安全,安全系列120和IAEA辐射防护基本安全标准的建议,《安全丛书》第115期。标准本身强调了能够预测紧急情况的放射后果和应进行的调查的必要性。本文介绍了过去二十年来发生的重大事故,提供了分析方法并总结了一些经验教训。这将有助于监管机构审查漏洞的原因,并启动辐射安全与保安计划,以引入能够避免类似事件再次发生的措施。尽管近年来发生了几起死亡事故,但引起公众注意的却是安全记录,伴随着辐射源的广泛使用。但是,事故很少见的事实不应为自满提供理由。没有放射性事故是可以接受的。从放射源的安全性角度出发,必须进行事故调查以确定发生的事情,原因,时间,地点和方式,以及由谁参与和负责。通过提高对安全绩效和安全文化的理解,调查结论是迈向机敏和反馈以避免粗心大意的重要过程。事故调查是通过防止重复发生来避免将来的伤害和经济损失的第一步。另一方面,事故调查对于确定后果的责任和责任也至关重要。本文讨论了在过去二十年中发生的主要事故,包括在密封源被损坏,丢失,被盗和被丢弃时的原因,后果,相似性和可汲取的教训。绝大多数情况下,辐射源和放射性材料的安全系统故障导致死亡和重伤。

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