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To chart a strategy for shifting to alternatives to cesium chloride, the James Martin Center for Nonproliferation Studies (CNS), with the support of the Foreign and Commonwealth Office of the United Kingdom, held a workshop in January 2014 among relevant stakeholders from domestic and foreign governments, industry, health providers, security experts, and the nongovernmental community. The workshop helped generate recommendations in this domain and in the broader area of replacements for radiological sources. Following the workshop discussions, the CNS team conducted a substantive review of the state of scholarly and policy best practices to date, consulting with relevant experts - this report details the subsequent insights and recommendations
In the United States there are several thousand devices containing high-activity radiation sources licensed for use in areas ranging from medical uses such as cancer therapy to safety uses such as testing of structures and industrial equipment. Those radiation sources are licensed by the U.S. Nuclear Regulatory Commission and state agencies. Concerns have been raised about the safety and security of the radiation sources, particularly amid fears that they could be used to create dirty bombs, or radiological dispersal device (RDD). In response to a request from Congress, the U.S. Nuclear Regulatory Commission asked the National Research Council to conduct a study to review the uses of high-risk radiation sources and the feasibility of replacing them with lower risk alternatives. The study concludes that the U.S. government should consider factors such as potential economic consequences of misuse of the radiation sources into its assessments of risk. Although the committee found that replacements of most sources are possible, it is not economically feasible in some cases. The committee recommends that the U.S. government take steps to in the near term to replace radioactive cesium chloride radiation sources, a potential "dirty bomb" ingredient used in some medical and research equipment, with lower-risk alternatives. The committee further recommends that longer term efforts be undertaken to replace other sources. The book presents a number of options for making those replacements.
The papers included in this volume comprise research from participants in the 2018 Nuclear Scholars Initiative and the Project on Nuclear Issues (PONI) Conference Series. PONI sponsors this research to provide a forum for facilitating new and innovative thinking and to provide a platform for emerging thought leaders across the nuclear enterprise. The papers in this volume span a wide range of technical and policy issues, further discussion in their respective areas, and provide innovative recommendations for pressing challenges. To that end, these papers explore such topics as the impacts of emerging technologies and capabilities, deep-diving on nuclear strategy and national policies, proposing paths forward for addressing proliferation challenges, and enhancing arms control in contentious environments.
This volume aims to improve understanding of nuclear security and the prevention of nuclear terrorism. Nuclear terrorism is perceived as one of the most immediate and extreme threats to global security today. While the international community has made important progress in securing fissile material, there are still important steps to be made with nearly 2,000 metric tons of weapons-usable nuclear material spread around the globe. The volume addresses this complex phenomenon through an interdisciplinary approach: legal, criminal, technical, diplomatic, cultural, economic, and political. Despite this cross-disciplinary approach, however, the chapters are all linked by the overarching aim of enhancing knowledge of nuclear security and the prevention of nuclear terrorism. The volume aims to do this by investigating the different types of nuclear terrorism, and subsequently discussing the potential means to prevent these malicious acts. In addition, there is a discussion of the nuclear security regime, in general, and an important examination of both its strengths and weaknesses. In summary, the book aims to extend the societal and political debate about the threat of nuclear terrorism. This book will be of much interest to students of nuclear proliferation, nuclear governance, terrorism studies, international organizations, and security studies in general.
The Oxford Handbook of Nuclear Security provides a comprehensive examination of efforts to secure sensitive nuclear assets and mitigate the risk of nuclear terrorism and other non-state actor threats. It aims to provide the reader with a holistic understanding of nuclear security through exploring its legal, political, and technical dimensions at the international, national, and organizational levels. Recognizing there is no one-size-fits-all approach to nuclear security, the book explores fundamental elements and concepts in practice through a number of case studies which showcase how and why national and organizational approaches have diverged. Although focused on critiquing past and current activities, unexplored yet crucial aspects of nuclear security are also considered, and how gaps in international efforts might be filled. Contributors to the handbook are drawn from a variety of different disciplinary backgrounds and experiences, to provide a wide range of perspectives on nuclear security issues and move beyond the Western narratives that have tended to dominate the debate.These include scholars from both developed and developing nuclear countries, as well as practitioners working in the field of nuclear security in an effort to bridge the gap between theory and practice.
Making a timely contribution to the legal literature, this important book discusses an under-analysed issue of great importance to international peace and security. It provides a comprehensive overview and analysis of the prevention of nuclear terrorism specifically through an international (arms control) law lens.
Does the identification number 60 indicate a toxic substance or a flammable solid, in the molten state at an elevated temperature? Does the identification number 1035 indicate ethane or butane? What is the difference between natural gas transmission pipelines and natural gas distribution pipelines? If you came upon an overturned truck on the highway that was leaking, would you be able to identify if it was hazardous and know what steps to take? Questions like these and more are answered in the Emergency Response Guidebook. Learn how to identify symbols for and vehicles carrying toxic, flammable, explosive, radioactive, or otherwise harmful substances and how to respond once an incident involving those substances has been identified. Always be prepared in situations that are unfamiliar and dangerous and know how to rectify them. Keeping this guide around at all times will ensure that, if you were to come upon a transportation situation involving hazardous substances or dangerous goods, you will be able to help keep others and yourself out of danger. With color-coded pages for quick and easy reference, this is the official manual used by first responders in the United States and Canada for transportation incidents involving dangerous goods or hazardous materials.
Radiation and the effects of radioactivity have been known for more than 100 years. International research spanning this period has yielded a great deal of information about radiation and its biological effects and this activity has resulted in the discovery of many applications in medicine and industry including cancer therapy, medical diagnostics