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RD&D-Programme 2004 - SKB

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15-42 Ekeroth E, Jonsson M, 2003. Oxidation of UO 2 by radiolytic oxidants. Journal of Nuclear Materials,<br />

322, pp 242–248.<br />

15-43 Jonsson M, Ekeroth E, Roth O, <strong>2004</strong>. Dissolution of UO 2 by one and two electron oxidants. In<br />

Scientific Basis for Nuclear Waste Management XXVII, Materials Research Society Symposium<br />

Proceedings (V M Oversby and L O Werme eds), Vol 807, pp 77–82.<br />

15-44 Christensen H, 2003. Oxidation of UO 2 fuel by water radiolysis products. The effect of secondary<br />

phases. Studsvik Report / N(K)-03/027, Studsvik Nuclear AB.<br />

15-45 Christensen H, Lundström T, <strong>2004</strong>. Oxidation of UO 2 fuel by water radiolysis products. Oxidation in<br />

5 M NaCl solutions. Studsvik Report / N-04/014, Studsvik Nuclear AB.<br />

15-46 Rai D, Gorby Y A, Fredrickson J K, Moore D A, Yui M, 2002. Reductive dissolution of PuO 2 (am):<br />

The effect of Fe(II) and hydroquinone. Journal of Solution Chemistry, 31, p 433.<br />

15-47 Nilsson H, Albinsson Y, Skarnemark G, <strong>2004</strong>. Dissolution of plutonium(III) at 50 bar H 2 . In<br />

Scientific Basis for Nuclear Waste Management XXVII, Materials Research Society Symposium<br />

Proceedings (V M Oversby and L O Werme eds), Vol 807, pp 615–620.<br />

15-48 Ödegaard-Jensen A, Albinsson Y, Nilsson H, <strong>2004</strong>. Solubility of Pu carbonates under reducing<br />

conditions. In Scientific Basis for Nuclear Waste Management XXVII, Materials Research Society<br />

Symposium Proceedings (V M Oversby and L O Werme eds), Vol 807, pp 585–588.<br />

15-49 Wahlgren U, 2003. Investigating the thermodynamics of the reduction of U(VI) to U(V) by Fe(II)<br />

using ab initio methods. <strong>SKB</strong> TR-03-14, Svensk Kärnbränslehantering AB.<br />

15-50 Butorin S, Ollila K, Albinsson Y, Nordgren J, Werme L, 2003. Reduction of uranyl carbonate<br />

and hydroxyl complexes and neptunyl carbonate complexes studied with chemical-electrochemical<br />

methods and Rixs spectroscopy. <strong>SKB</strong> TR-03-15, Svensk Kärnbränslehantering AB.<br />

15-51 Rovira M, de Pablo J, El Aamrani S, Duro L, Grivé M, Bruno J, 2003. Study of the role of<br />

magnetite in the immobilisation of U(VI) by reduction to U(IV) under the presence of H 2 (g) in<br />

hydrogen carbonate medium. <strong>SKB</strong> TR-03-04, Svensk Kärnbränslehantering AB.<br />

15-52 Scheidegger A M, Grolimund D, Cui D, Devoy J, Spahiu K, Wersin P, Bonhouse I, Janousch M,<br />

2003. Reduction of selenite on iron: a micro-spectroscopic study. Journal de Physique, 4.<br />

15-53 Spahiu K, 2002. Phase II of the NEA TDB project and some lessons learned from the use of Phase I<br />

data in PA. In The use of thermodynamic databases in performance assessment, Workshop Proceedings,<br />

May 29–30 Barcelona Spain, pp 31–39. OECD-NEA.<br />

15-54 Spahiu K, 2002. The use of SIT in the NEA TDB project – Advantages, drawbacks and comparison<br />

with the approaches used in some geochemical codes. In The use of thermodynamic databases in<br />

performance assessment. Workshop Proceedings, May 29–30 Barcelona Spain, pp 61–69. OECD-NEA.<br />

Chapter 16<br />

16-1 Ronneteg U, Moberg B, 2003. Inkapslingsteknik. Lägesrapport 2002. Oförstörande provning.<br />

<strong>SKB</strong> R-03-31, Svensk Kärnbränslehantering AB.<br />

16-2 Börgesson L, Johannesson L-E, Hernelind J, <strong>2004</strong>. Earthquake induced rock shear<br />

through a deposition hole. Effect on the canister and the buffer. <strong>SKB</strong> TR-04-02,<br />

Svensk Kärnbränslehantering AB.<br />

16-3 Andersson H, Seitisleam F, <strong>2004</strong>. Creep testing of thick-walled copper electron beam welds and<br />

friction stir welds. In Scientific Basis for Nuclear Waste Management, Materials Research Society<br />

Symposium Proceedings, Vol 824, (in press).<br />

16-4 Smart N R, Bond A E, Crossley J A A, Lovegrove P C, Werme L, 2001. Mechanical properties of<br />

oxides formed by anaerobic corrosion of steel. In Scientific Basis for Nuclear Waste Management,<br />

Materials Research Society Symposium Proceedings, Vol 663, pp 477–495.<br />

16-5 Smart N R, Rance A P, Fennel P, Werme L, 2003. Expansion due to anaerobic corrosion of steel and<br />

cast iron: experimental and natural analogue studies. European Federation of Corrosion Publications<br />

No 36, pp 280–294.<br />

16-6 Smart N R, Adams R, Werme L, <strong>2004</strong>. Analogues for the corrosion-induced expansion of ferrous<br />

materials in HLW containers. In Scientific Basis for Nuclear Waste Management XXVII, Materials<br />

Research Society Symposium Proceedings, Vol 807, pp 879–884.<br />

16-7 Smart N R, Blackwood D J, Werme L, 2002a. Anaerobic corrosion of carbon steel and cast iron in<br />

artificial groundwaters: Part 1 – Electrochemical aspects. Corrosion 58:7, pp 547–559.<br />

16-8 Smart N R, Blackwood, D J, Werme L, 2002b. Anaerobic corrosion of carbon steel and cast iron in<br />

artificial groundwaters: Part 2 – Gas generation. Corrosion 58:8, pp 627–637.<br />

16-9 Smart N R, Rance A P, Werme L, <strong>2004</strong>. Anaerobic corrosion of steel in bentonite. In Scientific Basis<br />

for Nuclear Waste Management XXVII, Materials Research Society Symposium Proceedings, Vol 807,<br />

pp 441–446.<br />

16-10 Smart N R, Rance A P, Fennel P A H, <strong>2004</strong>. Galvanic corrosion of copper-cast iron couples.<br />

<strong>SKB</strong> Technical Report, Svensk Kärnbränslehantering AB, (in manuscript).<br />

16-11 Guinan M W, 2001. Radiation effects in spent nuclear fuel canisters. <strong>SKB</strong> TR-01-32,<br />

Svensk Kärnbränslehantering AB.<br />

342 RD&D-<strong>Programme</strong> <strong>2004</strong>

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