The Closure of the Asse Research Mine



Similar documents
MATERIALS LICENSE. 1. Honeywell International, Inc. 3. License Number: SUB-526, Amendment 6-1

Position paper on the implications of deep sea disposal of radioctive waste

MATERIALS LICENSE. In accordance with the letter dated January 15, 2009,

The Wismut Rehabilitation Project: Present State, Outlook and Lessons Learned

RADIOACTIVE WASTE MANAGEMENT AND DECOMMISSIONING IN FINLAND

RC-17. Alejandro V. Nader National Regulatory Authority Montevideo - Uruguay

Master Degree in Nuclear Engineering: Academic year

Joint Convention on the Safety of Spent Fuel Management and on the Safety of Radioactive Waste Management

Historical Background of the Operation, Closure and Monitoring of Andra s CSM Disposal Facility

TVO and Nuclear Waste Management at Olkiluoto. Corporate Adviser

Selected aspects of the Danish repository program

Hazard Classification of the Remote Handled Low Level Waste Disposal Facility

IAEA Safety Standards for Regulatory Activities

Azeri, Chirag & Gunashli Full Field Development Phase 3 Environmental & Socio-economic Impact Assessment. A10.1 Introduction...

Regulatory Requirements and Licensing of OPG s DGR Project

ASTM C26 LONG RANGE PLAN Committee on the Nuclear Fuel Cycle

10 Nuclear Power Reactors Figure 10.1

APPENDIX CC NUCLEAR WASTE STORAGE

Activities at temporary job site utilizing U.S. NRC Radioactive Material License # Amendment (,

Comparison of natural radioactivity removal methods for drinking water supplies: A review

Nuclear accidents and radioactive contamination of foods 30 March 2011

RADIOACTIVE WASTE MANAGEMENT PROGRAMMES IN OECD/NEA MEMBER COUNTRIES MEXICO [2005] NATIONAL NUCLEAR ENERGY CONTEXT

Decommissioning situation of Nuclear Power Plant in Japan

Operating Performance: Accident Management: Severe Accident Management Programs for Nuclear Reactors REGDOC-2.3.2

SAFE MANAGEMENT OF SMOKE DETECTORS CONTAINING RADIOACTIVE SOURCES

Objectives 404 CHAPTER 9 RADIATION

The Management of Radioactive Waste from the Nuclear Medicine Sector. Peter Hayes

DEMONSTRATION ACCELERATOR DRIVEN COMPLEX FOR EFFECTIVE INCINERATION OF 99 Tc AND 129 I

the French experience

RADIOACTIVE WASTE MANAGEMENT PROGRAMMES IN OECD/NEA MEMBER COUNTRIES AUSTRALIA NATIONAL NUCLEAR ENERGY CONTEXT

Radiological mapping and characterization at the Barsebäck nuclear power plant

International Action Plan On The Decommissioning of Nuclear Facilities

Radiological Protection Principles concerning the Natural Radioactivity of Building Materials

1. In the general symbol cleus, which of the three letters. 2. What is the mass number of an alpha particle?

SECURITY ARRANGEMENTS OF RADIATION SOURCES

NRC s Program for Remediating Polluted Sites J.T. Greeves, D.A. Orlando, J.T. Buckley, G.N. Gnugnoli, R.L. Johnson US Nuclear Regulatory Commission

Security and Safeguards Considerations in Radioactive Waste Management. Canadian Nuclear Safety Commission

IBC Nuclear Energy Liability Exclusion. Explained

MEMORANDUM OF UNDERSTANDING BETWEEN THE ENVIRONMENTAL PROTECTION AGENCY AND THE NUCLEAR REGULATORY COMMISSION

R. Ruckman & B. Prosser Mine Ventilation Services, Inc., Clovis, California USA

NRC INSPECTION MANUAL INSPECTION PROCEDURE 88045

Outlook for RWE s nuclear operations. Prof. Dr. Gerd Jäger London, 16 January 2012

Questionnaire for NORM service providers

Draft IAEA Action Plan on Nuclear Safety

FORMERLY UTILIZED SITES REMEDIAL ACTION PROGRAM

SAVANNAH RIVER SITE S MACROENCAPSULATION PROCESSING OF LESS THAN 3700 BQ/GM1 TRU ISOTOPIC MIXED WASTE FOR DISPOSAL AT THE NEVADA TEST SITE

SOFTWARE REQUIREMENTS DESCRIPTION AND SOFTWARE DEVELOPMENT PLAN FOR BIOSPHERE MODEL TO ESTIMATE RADIOLOGICAL DOSE IN THE GOLDSIM ENVIRONMENT

Fukushima Fukushima Daiichi accident. Nuclear fission. Distribution of energy. Fission product distribution. Nuclear fuel

INTERNATIONAL ATOMIC ENERGY AGENCY WAGRAMERSTRASSE 5, P.O. BOX 100, A-1400 VIENNA, AUSTRIA FACSIMILE: (+43 1) 26007, TELEPHONE: (+43 1) 2600

Types of Engineering Jobs

A Comparison of an HPGe-based and NaI-based Radionuclide Identifier (RID) for Radioactive Materials

Japan s current Nuclear Energy Policy

Very low level waste management in Spain and in France

Management of spent fuel and radioactive waste in Finland national programme in accordance with Article 12 of the Council Directive 2011/70/Euratom

Management of Radioactive Waste & Materials Inventory Data

INFO-0545 RADIOISOTOPE SAFETY MONITORING FOR RADIOACTIVE CONTAMINATION

AP ENVIRONMENTAL SCIENCE 2012 SCORING GUIDELINES

Main properties of atoms and nucleus

RADIOACTIVE WASTE MANAGEMENT AND DECOMMISSIONING IN THE NETHERLANDS 1. NATIONAL AND REGULATORY FRAMEWORK

Nuclear Energy of Ukraine - History

NEW NUCLEAR POWER PLANT UNIT IN FINLAND ACCEPTED BY THE FINNISH PARLIAMENT

Nuclear Security Glossary

Activities of Nuclear Damage Compensation & Decommissioning Facilitation Corporation (NDF) Yasuharu Igarashi

Heterogeneous world model and collaborative scenarios of transition to globally sustainable nuclear energy systems

Dissolved Mineral Radioactivity in Drinking Water

EPA Radionuclides Rule and the RadNet Program

Case study from Ukraine

Nuclear Waste Management in Finland

IAEA Action Plan on Nuclear Safety 1

CANADA S RESOURCES: CONVENTIONAL AND ALTERNATIVE ENERGY

For convenience, we may consider an atom in two parts: the nucleus and the electrons.

MATERIALS LICENSE. Delaware City, Delaware Docket No Reference No.

Efficient Recycling and Waste Management»

The Long-Term Safety Strategy for the Geological Disposal of Radioactive Waste

Present status of the Swedish nuclear waste management programme. Kastriot Spahiu, SKB

Developing a Safety Case for Ontario Power Generation s L&ILW Deep Geologic Repository

New Proposed Department of Energy Rules to Clarify and Update Part 810. By Shannon MacMichael and Michael Lieberman of Steptoe & Johnson, LLP 1

Nuclear Energy Factsheet

Role and tasks of Arpa Piemonte in controlling and monitoring of ionizing and non ionizing radiation. G.. d Amored

February 19, Senior Fellow, Nuclear Energy Systems & Services Division Power Systems Company

USE OF IONIZING RADIATION IN THE TEACHING OF PHYSICS AND CHEMISTRY

Enclosure no. 1 to the announcement about convening the Ordinary General Meeting of PGE Polska Grupa Energetyczna S.A.

Proficiency testing schemes on determination of radioactivity in food and environmental samples organized by the NAEA, Poland

Inventory of Performance Monitoring Tools for Subsurface Monitoring of Radionuclide Contamination

Estimation of Nuclear Fuel Cycle Cost and Accident Risk Cost (Statement)

Transcription:

The Closure of the Asse Research Mine Joint Convention on the Safety of Spent Fuel Management and on the Safety of Radioactive Waste Management Second Review Meeting May 17th 2006 Dr. Helmut Bossy Federal Ministry of Education and Research Bonn Content Facts and Figures Legal Basis R+D in the Asse Mine Inventory Status of Closing 1

Facts and figures location, organization Asse belongs to the GSF - National Research Centre for Environment and Health responsibility of: Federal Ministry of Education and Research Facts and figures house for the winding machine and shaft tower 2

Facts and figures mining history North-south section 10.09.1906 01.11.1908 sinking of shaft 2 01.03.1909 31.12.1925 production of potassium salt 01.01.1916 31.03.1964 production of rock salt Facts and figures disposal 12.03.1965 Acquisition of the salt mine Asse by the GSF-research center 31.08.1972 18.01.1977 Disposal of medium active waste 04.04.1967 31.12.1978 Disposal of low active waste 3

Legal basis for disposal (1967 1978) Disposal took place in 6 phases, for each phase licences were granted by the mining authority The licences were based on the first Radiation Protection Ordinance and the Atomic Energy Act of 23 Dec. 1959; the authorizations also covered the final disposal of the radioactive waste The 4th amendment of the Atomic Energy Act from 1976 set the legal framework for final repositories; existing licenses (as for the Asse) remained unaffected by the 4th amendment Last licenses of the Asse mine for disposal expired 31 Dec. 1978 Asse mine has always been under supervision of the mining law; the closure of the Asse mine will also take place according to the regulations of the Federal Mining Act R&D in the Asse mine Disposal of low active waste vertical stacking technique 4

R&D in the Asse mine Disposal of low active waste horizontal stacking technique R&D in the Asse mine Disposal of low active waste dumping technique 5

R&D in the Asse mine 490 m level 6 m 511 m level Disposal of medium active waste (schematic view) R&D in the Asse mine Experimental disposal of highly radioactive sources (cold test) - experiment was canceled in 1992, radioactive sources were not emplaced - 6

Inventory Delivering party (waste origin) Karlsruhe research center Waste packages (%) 50 Total activity (%) 90 Jülich research center 10 2 Nuclear power plants 20 3 Other delivering parties 20 5 Total 100 100 Determination of inventory Inventory By analysis of documentation, questioning of waste producers, calculations, etc. radiological and chemo-toxic inventory was determined. Results 124,494 packages of LAW 1.9 E15 Bq (60% of total activity) 1,293 packages of MAW 1.2 E15 Bq (40% of total activity) 3.1 E15 Bq total activity (01.01.2002) 47,000 m 3 volume 7

Inventory Radionuclide Half-life [a] LAW Activity [Bq] MAW total H-3 1,2E+01 9,2E+11 3,5E+11 1,3E+12 C-14 5,7E+03 3,6E+12 2,2E+11 3,9E+12 Co-60 5,3E+00 1,6E+13 1,3E+14 1,5E+14 102 Mg uranium Ni-63 Sr-90 1,0E+02 2,9E+01 8,2E+13 1,9E+14 6,8E+14 1,4E+14 7,6E+14 3,3E+14 87 Mg thorium 11.6 kg plutonium I-129 Cs-137 Ra-226 Th-232 1,6E+07 3,0E+01 1,6E+03 1,4E+10 2,0E+08 3,6E+14 2,0E+11 3,5E+11 1,2E+08 2,1E+14 1,8E+02 1,2E+07 3,2E+08 5,7E+14 2,0E+11 3,5E+11 U-235 7,0E+08 5,2E+10 1,9E+08 5,2E+10 U-236 2,3E+07 1,2E+10 7,7E+08 1,3E+10 U-238 4,5E+09 1,3E+12 1,9E+09 1,3E+12 Pu-238 8,8E+01 3,6E+13 1,3E+12 3,7E+13 Pu-239 2,4E+04 1,8E+13 1,0E+12 1,9E+13 Pu-240 6,6E+03 2,1E+13 1,0E+12 2,2E+13 Pu-241 1,4E+01 1,1E+15 4,5E+13 1,1E+15 Am-241 4,3E+02 8,8E+13 7,2E12 9,4E+13 Total alpha - 1,7E+14 1,2E+13 1,8E+14 Total beta/gamma - 1,7E+15 1,2E+15 2,9E+15 Status of closing - goals Goals Obtain final operational plan (i.e. license to close mine) from mining authority on the basis of the long-term safety assessment for the radioactive waste close mine on the basis of final operational plan The legal requirements to be taken into account are in particular Radiation Protection Ordinance (Strahlenschutzverordnung) Federal Water Act (Wasserhaushaltsgesetz) Requirements concerning safety and the protection of the environment are the same in the two statutes mining law and atomic law! 8

Status of closing boundary conditions Long opening of the mine (> 50 years) reduced mechanical stability Inflow of NaCl brine (12 m 3 per day) flooding can not be excluded Open chambers in the carnallite formation dissolution of structures by the NaCl brine Status of closing conclusions and concept Closure of the mine is to be performed without delay Asse has its own concept MgCl 2 brine as protection fluid System of salt concrete barriers (MgO concrete ) Magnesium depots Closure measurements are not to anticipate the final operational plan Closing of mine concluded around ~ 2013 9

Status of closing - closing concept backfill + MgCl 2 brine MgCl 2 brine 725-m-level magnesium depot radioactive waste 750-m-level salt concrete barrier convergence Status of closing - measurements August 1995 December 2003 Backfilling of caverns with salt (2.5 Mio. m 3 ) 10

Status of closing - measurements Since 2004 Backfilling of the lowest part of the mine with salt, gravel and MgCl 2 brine (protection fluid) Thank you for your attention Glück auf! 11