High-Performance Power Capacitors
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As mentioned, multiple times in this report, supercapacitors have not been traditionally well suited for stand-alone, long-duration energy storage but may have substantial benefit when hybridized with complimentary storage technologies. Ideal combinations are those in which the strengths of one technology offset the weaknesses of another.
There has been substantial discussion around the hybridization of EDLC supercapacitors and other energy storage devices, such as lithium-ion batteries or pumped storage hydropower, to meet long-duration storage needs.
These faradaic processes allow PCs to achieve greater capacitances and energy densities than EDLCs, which involve only the electric double-layer effect at the electrode/electrolyte interface and no reactions at the electrodes. Hybrid electrochemical capacitors (HECs), also called asymmetrical capacitors, use different anode and cathode materials.
The life of supercapacitors will double for every 10°C decrease in temperature or voltage by 0.1V. Supercapacitors operated at room temperature can have life expectancies of several years compared to operating the capacitors at their maximum rated temperature. L1= Load life rating of the super capacitor (typically 1000 hours at rated temperature).
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