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1

Filby, Royston H., and Jan F. Branthaver, eds. Metal Complexes in Fossil Fuels. American Chemical Society, 1987. http://dx.doi.org/10.1021/bk-1987-0344.

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2

Davis, University of California. Trace metal mobilization during combustion of biomass fuels: PIER final project report. California Energy Commission, 2008.

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3

University, of California Davis. Trace metal mobilization during combustion of biomass fuels: PIER final project report. California Energy Commission, 2008.

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4

International Conference on Reliable Fuels for Liquid Metal Reactors (1986 Tucson, Ariz.). Proceedings. ANS, 1986.

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5

Matzke, Hj. Science of advanced LMFBR fuels: Solid state physics, chemistry, and technology of carbides, nitrides, and carbonitrides of uranium and plutonium. North-Holland, 1986.

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6

Kikō, Genshiryoku Anzen Kiban. Heisei 16-nendo kinzoku kyasuku chozō shisetsu anzen hyōka hōkokusho: Saishū hōkoku. Genshiryoku Anzen Kiban Kikō, 2006.

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7

Kikō, Genshiryoku Anzen Kiban. Heisei 18-nendo chūkan chozō shisetsu kijun taikei seibi jigyō hōkokusho. Genshiryoku Anzen Kiban Kikō, 2007.

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8

McEachern, Rod J. Oxidation behaviour of noble-metal inclusions in used UOb2s nuclear fuel. Research Chemistry Branch, Whiteshell Laboratories, 1997.

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9

JNES Kikaku Kijunbu Seminā "Shiyōzumi Nenryō Chūkan Chozō Shisetsu ni Kansuru Torikumi" (2006 Sekai bōeki Sentā). Heisei 17-nendo JNES Kikaku Kijunbu Seminā "Shiyōzumi Nenryō Chūkan Chozō Shisetsu ni Kansuru Torikumi" happyō shiryōshū. Genshiryoku Anzen Kiban Kikō Kikaku Kijunbu, 2006.

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10

Kikō, Genshiryoku Anzen Kiban. Kinzoku kyasuku kōzō kenzensei kaiseki ni kansuru hōkokusho: Heisei 16-nendo. Genshiryoku Anzen Kiban Kikō, 2005.

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11

Chen, Zhongwei, Jean-Pol Dodelet, and Jiujun Zhang Dodelet, eds. Non-Noble Metal Fuel Cell Catalysts. Wiley-VCH Verlag GmbH & Co. KGaA, 2014. http://dx.doi.org/10.1002/9783527664900.

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12

Rajendran, Saravanan, Hassan Karimi-Maleh, Jiaqian Qin, and Eric Lichtfouse, eds. Metal, Metal-Oxides and Metal Sulfides for Batteries, Fuel Cells, Solar Cells, Photocatalysis and Health Sensors. Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-63791-0.

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13

Canada, Atomic Energy of. Conceptual Design of Copper Metal-Matrix Fuel Waste Container. s.n, 1986.

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14

International Pipe Trades Joint Training Committee. Oxy-fuel cutting & welding and shielded metal-arc welding. International Pipe Trades Joint Training Committee, 2001.

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15

International Symposium on Metal Hydrogen Systems and Metal Hydrides (1st 1988 Stuttgart, Germany). Metal-hydrogen systems: Fundamentals and applications : proceedings of the First International Symposium combining "Hydrogen in metals" and "Metal hydrides", Max-Planck-Institute fur Metallforschung, Stuttgart, Federal Republic of Germany, September 4-9, 1988. Oldenbourg, 1989.

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16

Verma, Vishnu. Thermal analysis of metallic fuel for future FBRs. Bhabha Atomic Research Centre, 2009.

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17

Canada, Atomic Energy of. Casting technique development for half-scale metal-matrix fuel isolation containers. Atomic Energy of Canada Limited, 1986.

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18

Townsend, Troy K. Inorganic Metal Oxide Nanocrystal Photocatalysts for Solar Fuel Generation from Water. Springer International Publishing, 2014. http://dx.doi.org/10.1007/978-3-319-05242-7.

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19

Zhou, Yucun. Study on Fabrication and Performance of Metal-Supported Solid Oxide Fuel Cells. Springer Singapore, 2018. http://dx.doi.org/10.1007/978-981-10-6617-7.

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20

1976-, Chen Xiaobo, ed. Solar hydrogen generation: Transition metal oxides in water photoelectrolysis. McGraw-Hill Professional, 2012.

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21

Jewulski, Janusz. Chemical equilibrium diagrams relevant to the molten carbonate fuel cell: CHO gas + molten alkali carbonates + metal oxides heterogeneous system. PWN, 1985.

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22

International Symposium on Metal-Hydrogen Systems, Fundamentals and Applications (3rd 1992 Uppsala, Sweden). Metal-hydrogen systems: Fundamentals and applications : proceedings of the Third International Symposium, Uppsala, Sweden, June 8-12, 1992. Edited by Noréus D, Rundqvist S, and Wicke E. Oldenbourg, 1993.

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23

M, Prabhakaran K. Stress analysis of secondary ramp and secondary tilting mechanism of inclined fuel transfer machine for 500 MWe PFBR. Bhabha Atomic Research Centre, 2004.

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24

The metal-hydrogen system: Basic bulk properties. Springer-Verlag, 1993.

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25

The metal-hydrogen system: Basic bulk properties. 2nd ed. Springer, 2005.

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26

Mapungubwe Institute for Strategic Reflection, ed. South Africa and the global hydrogen economy: The strategic role of platinum group metals. Published by Real African Publishers on behalf of the Mapungubwe Institute for Strategic Reflection (MISTRA), 2013.

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27

R, Bieler Thomas, Minerals, Metals and Materials Society. Materials Processing and Manufacturing Division., and Minerals, Metals and Materials Society. Meeting, eds. Trends in materials and manufacturing technologies for transportation industries: And, Powder metallurgy research and development in the transportation industry : proceedings of symposium held at the 2005 TMS Annual Meeting, San Francisco, California, USA, February 13-17, 2005. TMS, 2005.

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28

1925-, Ehrlich Henry Lutz, Holmes David S, and National Science Foundation (U.S.), eds. Biotechnology for the mining, metal-refining, and fossil fuel processing industries: Proceedings of a workshop held at Rensselaer Polytechnic Institute in Troy, New York, May 28-30, 1985. J. Wiley, 1986.

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29

Dutton, R. A methodology to analyze the creep behaviour of nuclear fuel waste containers. Whiteshell Laboratories, 1995.

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30

Dutton, R. A methodology to analyze the creep behaviour of nuclear fuel waste containers. AECL, 1995.

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31

Dutton, R. A methodology to analyze the creep behaviour of nuclear fuel waste containers. AECL, Whiteshell Laboratories, 1995.

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32

Kouvo, Petri. Formation and control of trace metal emissions in co-firing of biomass, peat, and wastes in fluidised bed combustors. Lappeenranta University of Technology, 2003.

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33

Kopper, Karen Elsa. The evaluation of meta-analysis techniques for quantifying prescribed fire effects on fuel loadings. U.S. Dept. of Agriculture, Forest Service, Pacific Northwest Research Station, 2009.

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34

Kopper, Karen Elsa. The evaluation of meta-analysis techniques for quantifying prescribed fire effects on fuel loadings. U.S. Dept. of Agriculture, Forest Service, Pacific Northwest Research Station, 2009.

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35

Kopper, Karen Elsa. The evaluation of meta-analysis techniques for quantifying prescribed fire effects on fuel loadings. U.S. Dept. of Agriculture, Forest Service, Pacific Northwest Research Station, 2009.

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36

Survey, Illinois State Geological, ed. Effects of coal-bound chlorine on furnace-wall corrosion under low-NOx conditions. Illinois State Geological Survey, 2002.

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37

Symposium, J. on Light-Weight Materials for Transportation (1997 Strasbourg France). Light-weight materials for transportation and batteries and fuel cells for electric vehicles: Proceedings of Symposium J on Light-Weight Materials for Transportation and proceedings of Symposium E on Material Aspects for Electric Vehicles Including Batteries and Fuel Cells of the 1997 ICAM/E-MRS Spring Conference, Strasbourg, France, June 16-20, 1997. Elsevier, 1997.

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38

H, Filby Royston, Branthaver Jan F. 1936-, American Chemical Society. Division of Geochemistry., American Chemical Society. Division of Petroleum Chemistry., and American Chemical Society Meeting, eds. Metal complexes in fossil fuels: Geochemistry, characterization, and processing. American Chemical Society, 1987.

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39

Filby, Royston H. Metal Complexes in Fossil Fuels: Geochemistry, Characterization, and Processing (Acs Symposium Series). Amer Chemical Society, 1987.

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40

G, Schumacher, Henkel P. R, U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Systems Research., and Sandia National Laboratories, eds. In-pile observation of fuel and clad relocation during LMFBR core-disruptive accidents. Division of Systems Research, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1989.

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41

G, Schumacher, Henkel P. R, U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Systems Research., and Sandia National Laboratories, eds. In-pile observation of fuel and clad relocation during LMFBR core-disruptive accidents. Division of Systems Research, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1989.

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42

G, Schumacher, Henkel P. R, U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Systems Research., and Sandia National Laboratories, eds. In-pile observation of fuel and clad relocation during LMFBR core-disruptive accidents. Division of Systems Research, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1989.

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43

Denryoku Chūō Kenkyūjo (Tokyo, Japan), ed. Risaikuru nenryō shigen chozō gijutsu chōsa tō (chozō setsubi chōki kenzensei tō kakushō shiken) hōkokusho: Heisei 18-nendo. Denryoku Chūō Kenkyūjo, 2007.

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44

S, El-Genk Mohamed, and United States. National Aeronautics and Space Administration., eds. A review of nuclear thermal propulsion carbide fuel corrosion and key issues, final report. National Aeronautics and Space Administration, 1994.

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45

S, El-Genk Mohamed, and United States. National Aeronautics and Space Administration., eds. A review of nuclear thermal propulsion carbide fuel corrosion and key issues, final report. National Aeronautics and Space Administration, 1994.

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46

Chen, Zhongwei, Jiujun Zhang, and Jean-Pol Dodelet. Non-Noble Metal Fuel Cell Catalysts. Wiley-VCH Verlag GmbH, 2014.

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47

Chen, Zhongwei, Jiujun Zhang, and Jean-Pol Dodelet. Non-Noble Metal Fuel Cell Catalysts. Wiley & Sons, Incorporated, John, 2014.

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48

Chen, Zhongwei, Jiujun Zhang, and Jean-Pol Dodelet. Non-Noble Metal Fuel Cell Catalysts. Wiley & Sons, Incorporated, John, 2014.

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49

Chen, Zhongwei, Jiujun Zhang, and Jean-Pol Dodelet. Non-Noble Metal Fuel Cell Catalysts. Wiley & Sons, Limited, John, 2014.

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50

Chen, Zhongwei, Jiujun Zhang, and Jean-Pol Dodelet. Non-Noble Metal Fuel Cell Catalysts. Wiley & Sons, Incorporated, John, 2014.

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