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- 08:28, 5 August 2020 diff hist +140 INPRO collaborative project: GAINS (Sustainability Assessment)
- 08:18, 5 August 2020 diff hist +98 N File:FIG. 25. Fuel production chain for a light water reactor using uranium fuel in an open fuel cycle..jpg
- 08:13, 5 August 2020 diff hist +6 Nuclear Energy Systems
- 08:13, 5 August 2020 diff hist +65 Nuclear Energy Systems
- 08:08, 5 August 2020 diff hist +4 Fissile/fertile materials: global supply and demand (Sustainability Assessment) →Global conventional resources of uranium
- 08:07, 5 August 2020 diff hist +4 Fissile/fertile materials: global supply and demand (Sustainability Assessment) →Secondary supply of fissile material
- 08:07, 5 August 2020 diff hist +11 Fissile/fertile materials: global supply and demand (Sustainability Assessment) →Conclusions from the IAEA study to 2050
- 08:05, 5 August 2020 diff hist +149 INPRO collaborative project: GAINS (Sustainability Assessment)
- 08:04, 5 August 2020 diff hist +7,818 INPRO collaborative project: GAINS (Sustainability Assessment)
- 14:07, 4 August 2020 diff hist +96 Fissile/fertile materials: global supply and demand (Sustainability Assessment)
- 14:06, 4 August 2020 diff hist +17,140 N INPRO collaborative project: GAINS (Sustainability Assessment) Created page with " This page is the "Appendix III" to Environmental Impact from Depletion of Resources During 20..."
- 14:05, 4 August 2020 diff hist +155 N File:FIG. 22. Cumulative uranium consumption for the non-synergistic heterogeneous scenario BAU+–FR for the high case . ktHM — kilotonnes of heavy metal..png
- 14:04, 4 August 2020 diff hist +86 N File:FIG. 21d. Power generation for different types of reactors and groups in the BAU+–FR.png
- 14:04, 4 August 2020 diff hist +86 N File:FIG. 21c. Power generation for different types of reactors and groups in the BAU+–FR.png
- 14:03, 4 August 2020 diff hist +86 N File:FIG. 21b. Power generation for different types of reactors and groups in the BAU+–FR.png
- 14:03, 4 August 2020 diff hist +86 N File:FIG. 21a. Power generation for different types of reactors and groups in the BAU+–FR.png
- 13:58, 4 August 2020 diff hist +178 N File:FIG. 20b. Total global uranium usage for the BAU+–FR scenario in a homogeneous world (high case on the left, moderate case on the right). ktHM — kilotonnes of heavy metal..png
- 13:57, 4 August 2020 diff hist +178 N File:FIG. 20. Total global uranium usage for the BAU+–FR scenario in a homogeneous world (high case on the left, moderate case on the right). ktHM — kilotonnes of heavy metal..png
- 13:57, 4 August 2020 diff hist +65 N File:FIG. 19b. Power generation for different reactor types in the BAU.png
- 13:56, 4 August 2020 diff hist +64 N File:FIG. 19. Power generation for different reactor types in the BAU.png
- 13:26, 4 August 2020 diff hist +174 N File:FIG. 18b. Total global uranium usage for the BAU+ scenario in a homogeneous world (high case on the left, moderate case on the right). ktHM — kilotonnes of heavy metal..png
- 13:25, 4 August 2020 diff hist +173 N File:FIG. 18. Total global uranium usage for the BAU+ scenario in a homogeneous world (high case on the left, moderate case on the right). ktHM — kilotonnes of heavy metal..png
- 13:23, 4 August 2020 diff hist +224 N File:FIG. 17b. Power generation in the BAU+ scenario in a homogeneous world (high case on the left, moderate case on the right). ALWR — advanced light water reactor; HWR — heavy water reactor; LWR — light water reactor..png
- 13:22, 4 August 2020 diff hist +224 N File:FIG. 17a. Power generation in the BAU+ scenario in a homogeneous world (high case on the left, moderate case on the right). ALWR — advanced light water reactor; HWR — heavy water reactor; LWR — light water reactor..png
- 13:13, 4 August 2020 diff hist +148 N File:FIG. 16. GAINS scenarios for modelling nuclear power generation in the twenty-first century. IPCC — Intergovernmental Panel on Climate Change..png
- 13:11, 4 August 2020 diff hist +244 N File:FIG. 15. Heterogeneous model with synergistic groups and specific reactor types and fuel services identified.jpg
- 13:10, 4 August 2020 diff hist +71 N File:FIG. 14. Heterogeneous model with non-synergistic groups NG1–NG3 (3)..jpg
- 13:10, 4 August 2020 diff hist +68 N File:FIG. 13. Selected world models for fuel cycle analysis in GAINS (3)..jpg
- 13:04, 4 August 2020 diff hist +11 Non-renewable materials: global supply and demand (Sustainability Assessment) →Global demand and supply of uranium
- 12:56, 4 August 2020 diff hist +7,447 N Non-renewable materials: global supply and demand (Sustainability Assessment) Created page with " This page is the "Appendix II" to Environmental Impact from Depletion of Resources This appen..."
- 12:49, 4 August 2020 diff hist +34,154 N Fissile/fertile materials: global supply and demand (Sustainability Assessment) Created page with " This page is the "Appendix I" to Environmental Impact of Stressors This appendix presents a summary of the information generated in selected studies on global demand and supp..."
- 12:46, 4 August 2020 diff hist +127 N File:FIG. 12. Comparison of predicted supply by primary resources and secondary sources with demand for the reference scenario (27)..png
- 12:45, 4 August 2020 diff hist +99 N File:FIG. 11. Expected global supply from secondary uranium sources based on different assumptions (27)..png
- 12:44, 4 August 2020 diff hist +75 N File:FIG. 10. Expected annual production of uranium from primary resources (27)..png
- 12:44, 4 August 2020 diff hist +128 N File:FIG. 9. Expected annual uranium requirements for the three selected scenarios with different growth rates of nuclear power (27)..png
- 12:40, 4 August 2020 diff hist +48 N File:FIG. 8. Scenarios for global nuclear power (27)..png
- 12:39, 4 August 2020 diff hist +93 N File:FIG. 7. Nuclear fuel cycle of a thermal reactor with recycling of uranium and plutonium (27)..png
- 12:36, 4 August 2020 diff hist +161 N File:FIG. 6. Resource contribution by confidence level (11). EAR — estimated additional resources; RAR — reasonable assured resource;.png
- 12:30, 4 August 2020 diff hist +119 N File:FIG. 5. Projected annual world uranium production capability to 2035 compared with projected world uranium demand (13)..png
- 12:29, 4 August 2020 diff hist +51 N File:FIG. 4. Historic demand and supply of uranium (13)..png
- 12:24, 4 August 2020 diff hist +84 N File:FIG. 3. Trends in uranium exploration and development expenditures 1998–2011 (13)..png
- 12:23, 4 August 2020 diff hist +59 N File:FIG. 2. Uranium prices in the time period 1980–2010 (13)..png
- 12:07, 4 August 2020 diff hist -4 Environmental Impact from Depletion of Resources (Sustainability Assessment)
- 12:00, 4 August 2020 diff hist +13,761 Environmental Impact from Depletion of Resources (Sustainability Assessment)
- 11:28, 4 August 2020 diff hist -1 Environmental Impact from Depletion of Resources (Sustainability Assessment) →Balance of demand and available resources of fissile/fertile materials
- 10:12, 4 August 2020 diff hist 0 Environmental Impact from Depletion of Resources (Sustainability Assessment)
- 10:12, 4 August 2020 diff hist +49,838 N Environmental Impact from Depletion of Resources (Sustainability Assessment) Created page with " '''INPRO basic principle''' in the area of environmental impact of stressors: The NES shall be capable of contributing to the energy needs in the twenty-first century..."
- 10:09, 4 August 2020 diff hist 0 Environmental Impact of Stressors (Sustainability Assessment)
- 09:01, 4 August 2020 diff hist +71 N File:FIG. 1. Interfaces of a nuclear energy system with the environment (1)..png
- 15:07, 30 July 2020 diff hist +5 The INPRO Wiki (under development)