Radiation Safety Infrastructure: An IAEA TC Integrated Strategy for Safe & Sustainable Development

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An IAEA TC Integrated Strategy for Safe & Sustainable Development Dr. Khammar MRABIT Director General Moroccan Agency for Nuclear & Radiological Safety & Security AMSSNuR

OUTLINE 1 2 3 4 5 Background Radiation safety Challenges Achievements Conclusions status prior to & 1995 IAEA TC response

RADIATION SAFETY STATUS PRIOR TO 1995 The IAEA devoted considerable financial resources and technical efforts From 1984 to 1995 Radiation Protection Advisory Team (RAPAT) missions were conducted in 64 Member States Conclusion: The vast majority of MS still had little or no infrastructure in radiation safety Development of an integrated and proactive strategy Three Mile Island Chernobyl

CHALLENGES (1) 1. Lack of adequate legal and regulatory infrastructure 2. Lack of adequate education and training in radiation safety

CHALLENGES (2) 3. Insufficient financial and technical resources, and support services. 4. Lack of mechanisms for transfer of knowledge to, and the sharing of experiences among developing countries. 5. Institutional instability.

IAEA TECHNICAL COOPERATION RESPONSE Integrated and Proactive Strategy I II III IV Radiation Protection Country Profile : described in detail the existing safety infrastructure Assessment Scheme and Performance Indicators Criteria: enabled quantification of the progress achieved Radiation and Waste Safety Action Plans: identified real and specific needs of each participating Member State Peer Reviews: allowed assessment of effectiveness of radiation safety infrastructure

IAEA TECHNICAL COOPERATION RESPONSE Assessment by Peer Review 66 Missions to 50 different Model Project countries 1999 ----------------------- 2004 Terms of Reference 1. To determine the status of radiation safety; 2. To determine how effective the Model Collecting and evaluating information on the existing Project has been in improving the radiation, transport and waste situation in the country; and safety infrastructure, and establishing and maintaining 3. To submit findings, conclusions and for each of these countries recommendations, a if any, for further "Country Profile" that described in detail the existing strengthening of the national safety infrastructure infrastructure for radiation protection and safety. New sets of appraisals 1. RaSSIA, 2. ORPAS, 3. EPREV, 4. The Radiological Protection of Patients Appraisal (RPoPA) and 5. The Integrated Regulatory Review Service (IRRS)

THE MODEL PROJECT S ACHIEVEMENTS (1): 87 Participating PROGRESS ACHIEVED Countries BY Milestone 1: Establishment of a legislative and regulatory framework THE END OF 2004 Compliant legislation promulgated & implemented 80% Regulations adopted for most hazardous practices & compliant w/main requirements 75% System for inspection operational & covering major sources 50%+ Inventory of radiation sources in place for major sources 70%+

THE MODEL PROJECT S ACHIEVEMENTS (2): 87 Participating Countries Milestone 2: Establishment of occupational exposure control Operational workplace monitoring in place 50% System for individual monitoring for external exposure for workers w/higher risk 80% Central dose record system 80%

THE MODEL THE MODEL PROJECT S PROJECT S ACHIEVEMENTS EVOLUTION (5): AND 87 IMPLEMENTATION Participating Countries IAEA MS participating in the model Project on Upgrading Radiation Protection Infrastructure 91 Countries Radiation Protection Model Project: 1994-2004 Training course participants: 4719 Fellows: 871 Scientific Visits: 304 IAEA Staff: 861 International experts and lecturers: 1401 National Consultants: 174 Participants in management meetings: 1093

CONCLUSION (1) 1. The IAEA TC Programme defined a vision and a strategy for an integrated and harmonious process of: Design Planning Prioritization Delivery 2. The Model Project and its follow up projects : Strengthened regional expertise, networking and sharing of knowledge and experience. Led to the unprecedented active engagement of governments, at the government and regulatory authority levels, and of end-users in efforts to comply with the principal requirements of related standards.

CONCLUSION (2) 3. Improvement of standards : Building on success of Model Project approach => expanded this proactive approach in - international standards development 4. Substantial progress in upgrading radiation safety infrastructures in most participating countries. 5. Support by the IAEA to follow up to the Model Project, particularly key elements such as: encouraging States to engage in periodic appraisals and self-assessments; expanding regional cooperation, self-reliance and networking; and further promoting the train-the-trainer approach.