These are the sources and citations used to research dasdasd. This bibliography was generated on Cite This For Me on

  • Journal

    Gomez-Vidal, J. C. and Tirawat, R.

    Corrosion of alloys in a chloride molten salt (NaCl-LiCl) for solar thermal technologies

    2016 - Solar Energy Materials and Solar Cells

    In-text: (Gomez-Vidal and Tirawat 234-244)

    Your Bibliography: Gomez-Vidal, Judith C., and Robert Tirawat. "Corrosion Of Alloys In A Chloride Molten Salt (Nacl-Licl) For Solar Thermal Technologies." Solar Energy Materials and Solar Cells 157 (2016): 234-244. Web. 15 Mar. 2020.

  • Journal

    Guil-Lopez, R., Botas, J., Fierro, J. and Serrano, D.

    Comparison of metal and carbon catalysts for hydrogen production by methane decomposition

    2011 - Applied Catalysis A: General

    In-text: (Guil-Lopez et al. 40-51)

    Your Bibliography: Guil-Lopez, R. et al. "Comparison Of Metal And Carbon Catalysts For Hydrogen Production By Methane Decomposition." Applied Catalysis A: General 396.1-2 (2011): 40-51. Web. 15 Mar. 2020.

  • E-book or PDF

    HAYNES® 230® alloy - Principal Features

    2020 - Haynes International

    In-text: (HAYNES® 230® Alloy - Principal Features)

    Your Bibliography: HAYNES® 230® Alloy - Principal Features. Haynes International, 2020. Web. 15 Mar. 2020.

  • Journal

    Kameya, Y. and Hanamura, K.

    Kinetic and Raman spectroscopic study on catalytic characteristics of carbon blacks in methane decomposition

    2011 - Chemical Engineering Journal

    In-text: (Kameya and Hanamura 627-635)

    Your Bibliography: Kameya, Yuki, and Katsunori Hanamura. "Kinetic And Raman Spectroscopic Study On Catalytic Characteristics Of Carbon Blacks In Methane Decomposition." Chemical Engineering Journal 173.2 (2011): 627-635. Web. 15 Mar. 2020.

  • Journal

    Kang, D., Rahimi, N., Gordon, M. J., Metiu, H. and McFarland, E. W.

    Catalytic methane pyrolysis in molten MnCl2-KCl

    2019 - Applied Catalysis B: Environmental

    In-text: (Kang et al. 659-666)

    Your Bibliography: Kang, Dohyung et al. "Catalytic Methane Pyrolysis In Molten Mncl2-Kcl." Applied Catalysis B: Environmental 254 (2019): 659-666. Web. 15 Mar. 2020.

  • Journal

    Rahimi, N., Kang, D., Gelinas, J., Menon, A., Gordon, M. J., Metiu, H. and McFarland, E. W.

    Solid carbon production and recovery from high temperature methane pyrolysis in bubble columns containing molten metals and molten salts

    2019 - Carbon

    In-text: (Rahimi et al. 181-191)

    Your Bibliography: Rahimi, Nazanin et al. "Solid Carbon Production And Recovery From High Temperature Methane Pyrolysis In Bubble Columns Containing Molten Metals And Molten Salts." Carbon 151 (2019): 181-191. Web. 15 Mar. 2020.

  • Journal

    Salinas-Solano, G., Porcayo-Calderon, J., Gonzalez-Rodriguez, J. G., Salinas-Bravo, V. M., Ascencio-Gutierrez, J. A. and Martinez-Gomez, L.

    High Temperature Corrosion of Inconel 600 in NaCl-KCl Molten Salts

    2014 - Advances in Materials Science and Engineering

    In-text: (Salinas-Solano et al. 1-8)

    Your Bibliography: Salinas-Solano, G. et al. "High Temperature Corrosion Of Inconel 600 In Nacl-Kcl Molten Salts." Advances in Materials Science and Engineering 2014 (2014): 1-8. Web. 15 Mar. 2020.

  • Journal

    Stoddard, L., Andrew, D., Adams, S. and Galluzzo, G.

    Molten Salt: Concept Definition and Capital Cost Estimate

    2016

    In-text: (Stoddard et al.)

    Your Bibliography: Stoddard, Larry et al. "Molten Salt: Concept Definition And Capital Cost Estimate." (2016): n. pag. Web. 15 Mar. 2020.

  • Journal

    SUELVES, I., LAZARO, M., MOLINER, R., CORBELLA, B. and PALACIOS, J.

    Hydrogen production by thermo catalytic decomposition of methane on Ni-based catalysts: influence of operating conditions on catalyst deactivation and carbon characteristics

    2005 - International Journal of Hydrogen Energy

    In-text: (SUELVES et al. 1555-1567)

    Your Bibliography: SUELVES, I et al. "Hydrogen Production By Thermo Catalytic Decomposition Of Methane On Ni-Based Catalysts: Influence Of Operating Conditions On Catalyst Deactivation And Carbon Characteristics." International Journal of Hydrogen Energy 30.15 (2005): 1555-1567. Web. 15 Mar. 2020.

  • Journal

    Tal-Gutelmacher, E. and Eliezer, D.

    The hydrogen embrittlement of titanium-based alloys

    2005 - JOM

    In-text: (Tal-Gutelmacher and Eliezer 46-49)

    Your Bibliography: Tal-Gutelmacher, Ervin, and Dan Eliezer. "The Hydrogen Embrittlement Of Titanium-Based Alloys." JOM 57.9 (2005): 46-49. Web. 15 Mar. 2020.

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