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Radioactive waste management and contaminated site clean-up reviews radioactive waste management processes, technologies, and international experiences. Part one explores the fundamentals of radioactive waste including sources, characterisation, and processing strategies. International safety standards, risk assessment of radioactive wastes and remediation of contaminated sites and irradiated nuclear fuel management are also reviewed. Part two highlights the current international situation across Africa, Asia, Europe, and North America. The experience in Japan, with a specific chapter on Fukushima, is also covered. Finally, part three explores the clean-up of sites contaminated by weapons programmes including the USA and former USSR.Radioactive waste management and contaminated site clean-up is a comprehensive resource for professionals, researchers, scientists and academics in radioactive waste management, governmental and other regulatory bodies and the nuclear power industry. - Explores the fundamentals of radioactive waste including sources, characterisation, and processing strategies - Reviews international safety standards, risk assessment of radioactive wastes and remediation of contaminated sites and irradiated nuclear fuel management - Highlights the current international situation across Africa, Asia, Europe, and North America specifically including a chapter on the experience in Fukushima, Japan
Nuclear sites become contaminated with radionuclides due to accidents and activities carried out without due consideration for the environment. Naturally-occurring radioactive materials (NORM) released by industrial processes such as coal power production and fertilizer manufacture may also require clean-up. Environmental remediation and restoration aim to reduce exposure to radiation from contaminated soil or groundwater. This book provides a comprehensive overview of this area. Part 1 provides an introduction to the different types of contaminated site and their characteristics. Part 2 addresses environmental restoration frameworks and processes. Part 3 then reviews different remediation techniques and methods of waste disposal. - Explores types and characteristics of contaminated nuclear and NORM sites - Provides an in depth guide to environmental restoration frameworks and processes including stakeholder involvement, risk assessment and cost-benefit analysis in the remediation and restoration of contaminated nuclear and NORM sites - Offers coverage of remediation techniques and waste disposal from electrokinetic remediation to in situ and ex situ bioremediation of radionuclides contaminated soils
Disposal of radioactive waste from nuclear weapons production and power generation has caused public outcry and political consternation. Nuclear Wastes presents a critical review of some waste management and disposal alternatives to the current national policy of direct disposal of light water reactor spent fuel. The book offers clearcut conclusions for what the nation should do today and what solutions should be explored for tomorrow. The committee examines the currently used "once-through" fuel cycle versus different alternatives of separations and transmutation technology systems, by which hazardous radionuclides are converted to nuclides that are either stable or radioactive with short half-lives. The volume provides detailed findings and conclusions about the status and feasibility of plutonium extraction and more advanced separations technologies, as well as three principal transmutation concepts for commercial reactor spent fuel. The book discusses nuclear proliferation; the U.S. nuclear regulatory structure; issues of health, safety and transportation; the proposed sale of electrical energy as a means of paying for the transmutation system; and other key issues.
Once a nuclear installation has reached the end of its safe and economical operational lifetime, the need for its decommissioning arises. Different strategies can be employed for nuclear decommissioning, based on the evaluation of particular hazards and their attendant risks, as well as on the analysis of costs of clean-up and waste management. This allows for decommissioning either soon after permanent shutdown, or perhaps a long time later, the latter course allowing for radioactivity levels to drop in any activated or contaminated components. It is crucial for clear processes and best practices to be applied in decommissioning such installations and sites, particular where any significant health and environmental risks exist.This book critically reviews the nuclear decommissioning processes and technologies applicable to nuclear power plants and other civilian nuclear facilities. Part one focuses on the fundamental planning issues in starting a nuclear decommissioning process, from principles and safety regulations, to financing and project management. Part two covers the execution phase of nuclear decommissioning projects, detailing processes and technologies such as dismantling, decontamination, and radioactive waste management, as well as environmental remediation, site clearance and reuse. Finally, part three details international experience in the decommissioning of nuclear applications, including the main nuclear reactor types and nuclear fuel cycle facilities, as well as small nuclear facilities and legacy nuclear waste sites. - Critically reviews nuclear decommissioning processes and technologies applicable to nuclear power plants and other civilian nuclear facilities - Discusses the fundamental planning issues in starting a nuclear decommissioning process - Considers the execution phase of nuclear decommissioning projects, including dismantling, decontamination, and radioactive waste management, as well as environmental remediation, site clearance and reuse
“An intimate and deeply human memoir that shows why we should all be concerned about nuclear safety, and the dangers of ignoring science in the name of national security.”—Rebecca Skloot, #1 New York Times bestselling author of The Immortal Life of Henrietta Lacks A shocking account of the government’s attempt to conceal the effects of the toxic waste released by a secret nuclear weapons plant in Colorado and a community’s vain search for justice—soon to be a feature documentary Kristen Iversen grew up in a small Colorado town close to Rocky Flats, a secret nuclear weapons plant once designated "the most contaminated site in America." Full Body Burden is the story of a childhood and adolescence in the shadow of the Cold War, in a landscape at once startlingly beautiful and--unknown to those who lived there--tainted with invisible yet deadly particles of plutonium. It's also a book about the destructive power of secrets--both family and government. Her father's hidden liquor bottles, the strange cancers in children in the neighborhood, the truth about what was made at Rocky Flats--best not to inquire too deeply into any of it. But as Iversen grew older, she began to ask questions and discovered some disturbing realities. Based on extensive interviews, FBI and EPA documents, and class-action testimony, this taut, beautifully written book is both captivating and unnerving.
By the end of the Cold War, 45 years of weapons production and nuclear research had generated a sobering legacy: an astounding 1.7 trillion gallons of contaminated groundwater; 40 million cubic meters of tainted soil and debris; over 2,000 tons of intensely radioactive spent nuclear fuel; more than 160,000 cubic meters of radioactive and hazardous waste; and over 100 million gallons of liquid, high-level radioactive waste. After more than a decade of assessment, the Environmental Management Program estimated that it would need as much as $212 billion and 70 years to clean up the nuclear waste and contamination at 113 sites across the United States. By 2006, the Department of Energy had expended about $90 billion and greatly reduced risks from catastrophic accidents to both the public and its workers. Management of critical nuclear materials had become more efficient, secure, and accountable. Cleanup was complete at three relatively large and complex weapons productions sites, as well as many smaller ones. Yet many problems remain. Long-lived radioactive isotopes discharged into the soil will persist in slow migration, contaminating nearby groundwater. And while their potential for disastrous explosions has been virtually eliminated, storage tanks containing high-level waste will continue to deteriorate, posing further environmental risks. Long-term nuclear repositories will require unremitting management to protect future generations, and additional facilities still need to be developed. As in the past, public participation will be crucial. Lisa Crawford thought she lived across the road from an agricultural feed company--until one day in 1984, the Feed Materials Production Center inFernald, Ohio, released a toxic dust cloud. A year later, Lisa's well tested positive for excess uranium. She and several neighbors formed Fernald Residents for Environmental Safety and Health, or FRESH. We worked with people in the community and with our elected officials. When the government was ready to make legally binding cleanup decisions, FRESH members were involved. It took 22 years, but the work at Fernald was completed in the fall of 2006. In America's Nuclear Wastelands, Max S. Power uses non-technical language to present a brief overview of nuclear weapons history and contamination issues, as well as a description of the institutional and political environment. He provides a background for understanding the major value conflicts and associated political dynamics, and makes recommendations for navigating long-term stewardship, but his key purpose is to demonstrate the critical role of public participation, and in so doing, encourage citizens to take action regarding local and national policies related to nuclear production and waste disposal.
Focused attention by world leaders is needed to address the substantial challenges posed by disposal of spent nuclear fuel from reactors and high-level radioactive waste from processing such fuel. The biggest challenges in achieving safe and secure storage and permanent waste disposal are societal, although technical challenges remain. Disposition of radioactive wastes in a deep geological repository is a sound approach as long as it progresses through a stepwise decision-making process that takes advantage of technical advances, public participation, and international cooperation. Written for concerned citizens as well as policymakers, this book was sponsored by the U.S. Department of Energy, U.S. Nuclear Regulatory Commission, and waste management organizations in eight other countries.
The nuclear reactors and separation plants at the Hanford Site in Washington State made the plutonium for the bombs dropped on Japan in 1945. Plutonium production expanded during the Cold War and continued into the late 1980s leaving Hanford with a majority of the national inventory of high-level radioactive waste stored in its underground tanks. This book tells the story of one specific tank, the million-gallon double-shell tank 241-SY-101 in Hanford's 200-West Area. SY-101 was a dominating element in DOE waste management for the last decade of the 20th century. The possibility of a flammable gas burn in SY-101 was acknowledged as the safety issue of highest priority in the entire DOE complex during the early 1990s. Uncontrolled crust growth demanded another large-scale emergency effort in the late 1990s that finally allowed the tank to return to service in September 2001. It received its first waste as an "active" tank in November 2002. The experience spawned a legacy of inspired engineering, tight project discipline, and supportive teamwork that still affects the Hanford culture today. This narrative presents the whole SY-101 story from the viewpoint of those who lived through it. If it makes people who work in nuclear waste management pause and worry a little when funding, scheduling, or political pressures curtail creativity and prudence, the book will have served its purpose.