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Safety Of Uranium And Plutonium Mixed Oxide Fuel Fabrication Facilities Specific Safety Guide


Safety Of Uranium And Plutonium Mixed Oxide Fuel Fabrication Facilities Specific Safety Guide
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Safety Of Uranium And Plutonium Mixed Oxide Fuel Fabrication Facilities Specific Safety Guide


Safety Of Uranium And Plutonium Mixed Oxide Fuel Fabrication Facilities Specific Safety Guide
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Author : International Atomic Energy Agency
language : en
Publisher:
Release Date : 2010

Safety Of Uranium And Plutonium Mixed Oxide Fuel Fabrication Facilities Specific Safety Guide written by International Atomic Energy Agency and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2010 with Mixed oxide fuels (Nuclear engineering) categories.


This Safety Guide supplements the Safety Requirements publication Safety of Fuel Cycle Facilities, and addresses all the stages in the life cycle of MOX fuel fabrication facilities (MFFFs), with emphasis placed on design and operation. It describes the actions, conditions and procedures for meeting safety requirements and deals specifically with the handling, processing and storage of plutonium oxide, depleted, natural or reprocessed uranium oxide, mixed oxide manufactured from the above to be used as a feed material to form MOX fuel rods and assemblies for export and subsequent use in water reactors and fast breeder reactors. The publication is intended to be of use to designers, operating organizations and regulators to ensure the safety of MOX fuel fabrication facilities.Contents: 1. Introduction; 2. General safety recommendations; 3. Site evaluation; 4. Design; 5. Construction; 6. Commissioning; 7. Operation; 8. Decommissioning; Annexes.



Safety Of Uranium And Plutonium Mixed Oxide Fuel Fabrication Facilities Specific Safety Guide


Safety Of Uranium And Plutonium Mixed Oxide Fuel Fabrication Facilities Specific Safety Guide
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Author : IAEA (Corporate Author)
language : en
Publisher:
Release Date : 2010

Safety Of Uranium And Plutonium Mixed Oxide Fuel Fabrication Facilities Specific Safety Guide written by IAEA (Corporate Author) and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2010 with categories.


This Safety Guide supplements the Safety Requirements publication Safety of Fuel Cycle Facilities, and addresses all the stages in the life cycle of MOX fuel fabrication facilities (MFFFs), with emphasis placed on design and operation. It describes the actions, conditions and procedures for meeting safety requirements and deals specifically with the handling, processing and storage of plutonium oxide, depleted, natural or reprocessed uranium oxide, mixed oxide manufactured from the above to be used as a feed material to form MOX fuel rods and assemblies for export and subsequent use in water r.



Safety Of Uranium And Plutonium Mixed Oxide Fuel Fabrication Facilities


Safety Of Uranium And Plutonium Mixed Oxide Fuel Fabrication Facilities
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Author : International Atomic Energy Agency
language : en
Publisher:
Release Date : 2010

Safety Of Uranium And Plutonium Mixed Oxide Fuel Fabrication Facilities written by International Atomic Energy Agency and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2010 with Technology & Engineering categories.


This Safety Guide supplements the Safety Requirements publication Safety of Fuel Cycle Facilities, and addresses all the stages in the life cycle of MOX fuel fabrication facilities (MFFFs), with emphasis placed on design and operation. It describes the actions, conditions and procedures for meeting safety requirements and deals specifically with the handling, processing and storage of plutonium oxide, depleted, natural or reprocessed uranium oxide, mixed oxide manufactured from the above to be used as a feed material to form MOX fuel rods and assemblies for export and subsequent use in water reactors and fast breeder reactors. The publication is intended to be of use to designers, operating organizations and regulators to ensure the safety of MOX fuel fabrication facilities.



Safety Of Nuclear Fuel Reprocessing Facilities


Safety Of Nuclear Fuel Reprocessing Facilities
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Author :
language : en
Publisher:
Release Date : 2017

Safety Of Nuclear Fuel Reprocessing Facilities written by and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2017 with Nuclear facilities categories.


"This publication provides guidance on meeting the requirements of IAEA Safety Standards Series No. NS-R-5 (Rev.1) relating to nuclear fuel reprocessing facilities. It covers the lifetime of these facilities, from site selection through to decommissioning, concentrating on the design and operational phases. It applies to facilities that reprocess spent fuel and other material from nuclear power plants that use metallic and oxide fuels, including materials from mixed oxide fuel (MOX) and breeder reactors. It covers the safety issues relating to: the handling of spent fuel; mechanical treatment and the dissolution of spent fuel in acid; the separation of uranium and plutonium from fission products using solvents; the separation and purification of plutonium and uranium; and the production and storage of solutions and oxides to be used as feed material to form fresh uranium or mixed (UO2/PuO2) oxide fuel."--Publisher's description.



Safety Of Uranium Fuel Fabrication Facilities Specific Safety Guide


Safety Of Uranium Fuel Fabrication Facilities Specific Safety Guide
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Author : International Atomic Energy Agency
language : en
Publisher:
Release Date : 2010

Safety Of Uranium Fuel Fabrication Facilities Specific Safety Guide written by International Atomic Energy Agency and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2010 with Nuclear facilities categories.


This Safety Guide supplements the Safety Requirements publication Safety of Fuel Cycle Facilities, and addresses all the stages in the life cycle of uranium fuel fabrication facilities (UFFFs), with emphasis being placed on design and operation. It describes the actions, conditions and procedures for meeting safety requirements and deals specifically with the handling, processing and storage of low enriched uranium that has a 235U concentration of no more than 6%, derived from natural, highly enriched or reprocessed uranium. The publication is intended to be of use to designers, operating organizations and regulators to ensure the safety of UFFFs.Contents: 1. Introduction; 2. General safety recommendations; 3. Site evaluation; 4. Design; 5. Construction; 6. Commissioning; 7. Operation; 8. Decommissioning; Annexes.



Technology Safety And Costs Of Decommissioning A Reference Small Mixed Oxide Fuel Fabrication Plant Main Report


Technology Safety And Costs Of Decommissioning A Reference Small Mixed Oxide Fuel Fabrication Plant Main Report
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Author : C. E. Jenkins
language : en
Publisher:
Release Date : 1979

Technology Safety And Costs Of Decommissioning A Reference Small Mixed Oxide Fuel Fabrication Plant Main Report written by C. E. Jenkins and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 1979 with Nuclear facilities categories.




Health And Safety Considerations For Uranium Fuel Fabrication Facilities


Health And Safety Considerations For Uranium Fuel Fabrication Facilities
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Author : William A. Brobst
language : en
Publisher:
Release Date : 1958

Health And Safety Considerations For Uranium Fuel Fabrication Facilities written by William A. Brobst and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 1958 with Nuclear reactors categories.




Safety Of Nuclear Fuel Cycle Research And Development Facilities


Safety Of Nuclear Fuel Cycle Research And Development Facilities
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Author : International Atomic Energy Agency
language : en
Publisher:
Release Date : 2017

Safety Of Nuclear Fuel Cycle Research And Development Facilities written by International Atomic Energy Agency and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2017 with Science categories.


It covers the lifetime of these facilities from site selection through to decommissioning, concentrating on design and operation. It applies to laboratories, pilot workshops and experimental facilities that store, handle and process uranium, plutonium and other transuranics, fission products and activated materials in significant quantities. Such facilities may be involved in the study of chemical, metallurgical or radiological properties of specific radioactive materials such as prototype nuclear fuels (before and after reactor irradiation) or nuclear material or radioactive waste arising from experimental processes. This Safety Guide also applies to research and development for processes and equipment that are envisaged for later use on an industrial scale for the nuclear fuel cycle (e.g. pilot workshops for active waste conditioning).



Safety Of Conversion Facilities And Uranium Enrichment Facilities Specific Safety Guide Iaea Safety Standards Series No Ssg 5 Rev 1


Safety Of Conversion Facilities And Uranium Enrichment Facilities Specific Safety Guide Iaea Safety Standards Series No Ssg 5 Rev 1
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Author : International Atomic Energy Agency
language : en
Publisher:
Release Date : 2023-06-30

Safety Of Conversion Facilities And Uranium Enrichment Facilities Specific Safety Guide Iaea Safety Standards Series No Ssg 5 Rev 1 written by International Atomic Energy Agency and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2023-06-30 with Technology & Engineering categories.


This Safety Guide, a revision of IAEA Safety Standards Series No. SSG-5, was initiated to provide recommendations on site evaluation, design, construction, commissioning, operation and preparation for decommissioning of conversion facilities and uranium enrichment facilities to meet the applicable requirements established in IAEA Safety Standards No. SSR-4, Safety of Nuclear Fuel Cycle Facilities, which incorporates the lessons learned from the accident at the Fukushima Daiichi nuclear power plant. The revised Safety Guide also reflects current operational practices at conversion facilities and uranium enrichment facilities. The recommendations in this publication are aimed primarily at operating organizations of conversion facilities and uranium enrichment facilities, regulatory bodies and designers.



Uranium Enrichment And Nuclear Weapon Proliferation


Uranium Enrichment And Nuclear Weapon Proliferation
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Author : Allan S. Krass
language : en
Publisher: Routledge
Release Date : 2020-11-20

Uranium Enrichment And Nuclear Weapon Proliferation written by Allan S. Krass and has been published by Routledge this book supported file pdf, txt, epub, kindle and other format this book has been release on 2020-11-20 with Political Science categories.


Originally published in 1983, this book presents both the technical and political information necessary to evaluate the emerging threat to world security posed by recent advances in uranium enrichment technology. Uranium enrichment has played a relatively quiet but important role in the history of efforts by a number of nations to acquire nuclear weapons and by a number of others to prevent the proliferation of nuclear weapons. For many years the uranium enrichment industry was dominated by a single method, gaseous diffusion, which was technically complex, extremely capital-intensive, and highly inefficient in its use of energy. As long as this remained true, only the richest and most technically advanced nations could afford to pursue the enrichment route to weapon acquisition. But during the 1970s this situation changed dramatically. Several new and far more accessible enrichment techniques were developed, stimulated largely by the anticipation of a rapidly growing demand for enrichment services by the world-wide nuclear power industry. This proliferation of new techniques, coupled with the subsequent contraction of the commercial market for enriched uranium, has created a situation in which uranium enrichment technology might well become the most important contributor to further nuclear weapon proliferation. Some of the issues addressed in this book are: A technical analysis of the most important enrichment techniques in a form that is relevant to analysis of proliferation risks; A detailed projection of the world demand for uranium enrichment services; A summary and critique of present institutional non-proliferation arrangements in the world enrichment industry, and An identification of the states most likely to pursue the enrichment route to acquisition of nuclear weapons.