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NASA Applications using Fuel Cell Electrolysis Technologies

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NASA Applications using Fuel Cell Electrolysis Technologies ( nasa-applications-using-fuel-cell-electrolysis-technologies )

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Regenerative Fuel Cell Rechargeable Battery Rechargeable batteries store energy intimately with the energy conversion mechanism Regenerative fuel cells (RFCs) store energy remotely from the energy conversion mechanisms This difference results in: Regenerative Fuel Cell vs. Rechargable Battery Energy Storage enabling and augmenting exploration activities Oxidizer Fuel QTH Energy Storage Energy Conversion Mechanism (Charge) Fuel Cell EZ Cell Battery QTH - - Different Hazards and Mitigations o Batteries sensitive to Thermal Runaway o RFC have very complicated supporting systems Different Voltage to State-of-Charge (SoC) relationships o Rechargeable battery voltage dependent on quantity of stored energy o RFC discharge voltage independent of quantity of stored energy Different Recharge/Discharge capabilities o Battery rates determined by chemistry and SoC o Fuel Cell and electrolyzer independently “tunable” for Byproducts Discharging Charging Energy Conversion Mechanism (Discharge) mission location Charging or Discharging - 15

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NASA Applications using Fuel Cell Electrolysis Technologies

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