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Showing 1 to 4 of 4 for “"Nuclear-based hydrogen production"”.

  1. Energy, exergy and cost analyses of nuclear-based hydrogen production via thermochemical water decomposition using a copper-chlorine (Cu-CI) cycle

    In this thesis the Copper-Chlorine (Cu-CI) thermochemical cycle and its components as well as operational and environmental conditions are defined, and a comprehensive thermodynamic analysis of a Cu-CI thermochemical cycle, including the relevant chemical reactions, is performed. Also the …

    uoit Repository record for Energy, exergy and cost analyses of nuclear-based hydrogen production via thermochemical water decomposition using a copper-chlorine (Cu-CI) cycle (opens in a new tab)

  2. Monte-Carlo-simulation-based performance analysis of the heat transfer process in nuclear-based hydrogen production based on Cu-Cl Cycle.

    As a crucial step in nuclear-based hydrogen production based on Cu-Cl cycle, the performance analysis of heat transfer process is of paramount importance. However, as a newly built system, the major obstacle of applying standard performance analysis to the heat transfer process is the sparse data. …

    uoit Repository record for Monte-Carlo-simulation-based performance analysis of the heat transfer process in nuclear-based hydrogen production based on Cu-Cl Cycle. (opens in a new tab)

  3. Evaporative heat and mass transfer with solubility driven solidification of aqueous droplet flows

    Nuclear-based hydrogen production via thermochemical water decomposition using a copper-chlorine cycle consists of a series of chemical reactions that split water into hydrogen and oxygen. This is accomplished through reactions involving intermediate copper and chlorine compounds, which act as …

    uoit Repository record for Evaporative heat and mass transfer with solubility driven solidification of aqueous droplet flows (opens in a new tab)

  4. Development of a PSA-based safety assessment and management framework for nuclear-based hydrogen generation system.

    The nuclear-based Cooper-Chloride (Cu-Cl) thermochemical cycle a promising method for future large-scale hydrogen generation. The nuclear-based hydrogen generation leads to new challenge for system safety due to the complexity of the co-generation system. In this research, a PSA-based framework for …

    uoit Repository record for Development of a PSA-based safety assessment and management framework for nuclear-based hydrogen generation system. (opens in a new tab)