Abstract
Availability of grid-scale electric energy storage systems with response rates on the order of seconds plays a key role in wide implementation of renewable energy sources. Here, a new concept called the electrochemical flow capacitor (EFC) is presented. This new concept shares the major advantages of both supercapacitors and flow batteries, providing rapid charging/discharging while enabling the decoupling of the power and energy ratings. Like in supercapacitors, energy is stored in the electric double layer of charged carbon particles. A flowable carbon-electrolyte mixture is employed as the active material for capacitive energy storage, and is handled in a similar fashion to flow or semi-solid batteries (i.e., for charging/discharging, it is pumped into an electrochemical cell, and for storage, it is pumped into reservoirs). This study presents the proof-of-concept of this technology and reports initial EFC performance data obtained under static and intermittent flow operations. ©2012 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
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CITATION STYLE
Presser, V., Dennison, C. R., Campos, J., Knehr, K. W., Kumbur, E. C., & Gogotsi, Y. (2012). The electrochemical flow capacitor: A new concept for rapid energy storage and recovery. Advanced Energy Materials, 2(7), 895–902. https://doi.org/10.1002/aenm.201100768
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