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This page lists existing pages that are currently protected. For a list of titles that are protected from creation, see Protected titles.

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Timestamp Page Expires Protecting user Protection parameters Reason
14:50, 10 August 2020 Mining and milling of uranium and thorium (Sustainability Assessment)26,377 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:51, 10 August 2020 Uranium refining/conversion and enrichment (Sustainability Assessment)24,054 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:51, 10 August 2020 Uranium oxide and MOX fuel fabrication (Sustainability Assessment)24,804 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:51, 10 August 2020 Reprocessing of spent nuclear fuel (Sustainability Assessment)18,244 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:51, 10 August 2020 Storage of spent nuclear fuel (Sustainability Assessment)20,091 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:52, 10 August 2020 Fissile/fertile materials: global supply and demand (Sustainability Assessment)38,851 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:52, 10 August 2020 Non-renewable materials: global supply and demand (Sustainability Assessment)8,371 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:52, 10 August 2020 INPRO collaborative project: GAINS (Sustainability Assessment)27,954 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:52, 10 August 2020 Efficiency of uranium use (Sustainability Assessment)8,345 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:53, 10 August 2020 Safety (Sustainability Assessment)307 bytes infinite SHIROKIYD (talk | contribs) fully protected  
12:04, 25 August 2020 Application of multi-criteria decision analysis methods to comparative evaluation of nuclear energy system options43,569 bytes infinite SHIROKIYD (talk | contribs) fully protected  
12:05, 25 August 2020 Analytical Framework for Analysis and Assessment of Transition Scenarios to Sustainable Nuclear Energy Systems70,706 bytes infinite SHIROKIYD (talk | contribs) fully protected  
12:05, 25 August 2020 Enhancing benefits of nuclear energy technology innovation through cooperation among countries82,426 bytes infinite SHIROKIYD (talk | contribs) fully protected  
12:05, 25 August 2020 ASENES2,052 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:04, 25 August 2020 File:ASENES Menu.png25 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:05, 25 August 2020 File:Fig. 1. SYNERGIES storyline.png27 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:05, 25 August 2020 File:Fig. 2. Overall view of the considered synergies among the technologies..png72 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:05, 25 August 2020 File:Fig. 3. Nature of synergies within the SYNERGIES storyline (the lower bar shows the degree of technological readiness in conventional units (18))..png146 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:05, 25 August 2020 File:Fig. 4. CAREM - small PWR reactor of Argentinian design of 25 MWe capacity..jpg228 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:05, 25 August 2020 File:Fig. 5. Fresh fuel annual requirements (left) and cumulative spent fuel in storages (right)..png92 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:05, 25 August 2020 File:Fig. 6 Cumulative spent fuel accumulation in two scenarios..png59 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:05, 25 August 2020 File:7a.png2 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:06, 25 August 2020 File:Fig. 7b SYNEGRIES.png17 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:06, 25 August 2020 File:Fig. 7c SYNERGIES.png17 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:06, 25 August 2020 File:Fig. 7d SYNERGIES.png17 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:06, 25 August 2020 File:Fig. 7e SYNERGIES.png17 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:06, 25 August 2020 File:Fig. 8 Comparison of the amounts of spent nuclear fuel in interim storage in the two EU27 scenarios..png100 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:06, 25 August 2020 File:Fig. 9. Scheme of regional collaboration on spent nuclear fuel utilization..png75 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:06, 25 August 2020 File:Fig. 10. French scenario- (a) First step, (b) Second step of transition to the NES based on closed nuclear fuel cycle..png118 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:06, 25 August 2020 File:Fig. 11. Russian scenario- (a) First step, (b) Second step (in the case of a high energy demand), (c) Second step (in the case of energy demand stabilization)..png159 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:06, 25 August 2020 File:Fig. 12. Back end synergistic case in the global scenario..png58 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:06, 25 August 2020 File:Fig. 13. Long term storages of LWR SNF in NG1 (synergistic case).png64 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:06, 25 August 2020 File:Fig. 14. Levelized fuel cycle unit costs..png41 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:06, 25 August 2020 File:Fig. 15. The value of reprocessed uranium as a function of the cost of natural uranium, with fabrication costs held fixed.png121 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:07, 25 August 2020 File:Fig. 16. The minimum required averted disposal costs of HLW for each storage duration and REPU enrichment..png106 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:07, 25 August 2020 File:Fig. 17. Reduction of minor actinides (MA) in the waste and increase of the inventory of minor actinides in the fuel cycle in scenarios with transmutation of minor actinides..png174 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:07, 25 August 2020 File:Fig. 18. Pu and MA inventories in disposal facilities at the end of scenario cycle..png83 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:07, 25 August 2020 File:FIG.1. 5th Meeting of the INPRO Collaborative Project GAINS, 27 May 2010..jpg73 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:07, 25 August 2020 File:FIG. 2. Set of reactor and fuel types with deployment time frames..jpg66 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:07, 25 August 2020 File:FIG. 3. GAINS scenarios for modelling nuclear power generation (GWa values show actual electric power produced annually, not installed capacity)..png149 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:07, 25 August 2020 File:FIG. 4. Heterogeneous models for future global nuclear fuel cycles..png71 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:07, 25 August 2020 File:FIG. 5..png69 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:07, 25 August 2020 File:FIG. 6. Variation in technical maturity for reactor designs in the GAINS database.png81 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:07, 25 August 2020 File:FIG. 7. Flow chart for a combined once-through cycle and fast reactor closed fuel cycle system.png98 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:07, 25 August 2020 File:FIG. 8. Power production growth for BAU (a) and BAU&FR systems (b)..png71 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:07, 25 August 2020 File:FIG. 9. Cumulative natural uranium demand in BAU (a) and BAU&FR (b) systems for the high GAINS scenario..png104 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:07, 25 August 2020 File:FIG. 10. Cumulative amounts of spent fuel in BAU(a) and BAU&FR (b) systems for the high GAINS scenario..png103 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:07, 25 August 2020 File:FIG. 11. Potential for fast reactor deployment..png47 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:08, 25 August 2020 File:FIG. 12. Plutonium in short-term cooled SNF for the moderate GAINS scenario..png76 bytes infinite SHIROKIYD (talk | contribs) fully protected  
14:08, 25 August 2020 File:FIG. 13. Pay-back period for R&D cost for the innovative nuclear energy system for different installed capacities..png114 bytes infinite SHIROKIYD (talk | contribs) fully protected  
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