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USAID GRID-SCALE ENERGY STORAGE TECHNOLOGIES PRIMER

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USAID GRID-SCALE ENERGY STORAGE TECHNOLOGIES PRIMER ( usaid-grid-scale-energy-storage-technologies-primer )

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September 2018. https://arpa-e.energy.gov/?q=slick-sheet-project/minimal-overhead-storage- technology-duration-addition-electricity-storage. REN21. 2019. “Renewables 2019 Global Status Report.” Renewable Energy Policy Network for the 21st Century. Schoenung, Susan, Raymond H Byrne, Todd Olinsky-Paul, and Daniel R Borneo. 2017. “Green Mountain Power (GMP): Significant Revenues from Energy Storage.” Technical Report SAND2017-6164. Albuquerque, NM: Sandia National Laboratories. https://www.sandia.gov/ess- ssl/publications/SAND2017-6164.pdf. Sciacovelli, A., A. Vecchi, and Y. Ding. 2017. “Liquid Air Energy Storage (LAES) with Packed Bed Cold Thermal Storage – From Component to System Level Performance through Dynamic Modelling.” Applied Energy 190 (March): 84–98. https://doi.org/10.1016/j.apenergy.2016.12.118. Seasholtz, Jeff. 2015. “Grid-Scale Energy Storage Demonstration of Ancillary Services Using the UltraBattery Technology.” Final Technical Performance Report. Smart Grid Demonstration. Lyon Station, PA: DOE & East Penn. https://doi.org/10.2172/1349503. Sherif, S.A., Yogi Goswami, E.K. Stefanakos, and Aldo Steinfeld, eds. 2014. Handbook of Hydrogen Energy. 1st ed. Boca Raton: CRC Press. Somani, A., N Voisin, R Tipireddy, S. Turner, T.D. Veselka, Q. Ploussard, V. Koritarov, et al. 2021. “Hydropower Value Study: Current Status and Future Opportunities.” Technical Report PNNL- 29226. Hydrowires. Richland, WA: Pacific Northwest National Lab. Succar, Samir, and Robert H. Williams. 2008. “Compressed Air Energy Storage: Theory, Resources, And Applications for Wind Power.” Princeton Environmental Institute: Princeton University. https://acee.princeton.edu/wp- content/uploads/2016/10/SuccarWilliams_PEI_CAES_2008April8.pdf. Tewari, Saurabh. 2015. “Chapter 3 - Potential of Sodium-Sulfur Battery Energy Storage to Enable Further Integration of Wind.” In Energy Storage for Smart Grids. Tixador, Pascal. 2008. “Superconducting Magnetic Energy Storage: Status and Perspective.” Superconductivity News Forum. Grenoble, France: IEEE CSC. https://snf.ieeecsc.org/abstracts/cr5-superconducting-magnetic-energy-storage-status-and- perspective. United Power. 2018. “Battery Storage System Goes Live.” Utility Home Page. News and Community. November 1, 2018. https://www.unitedpower.com/battery-storage-system-goes-live. United Technologies Research Center, and ARPA-E. 2018. “High-Performance Flow Battery with Inexpensive Inorganic Reactants (P.400.0618).” Government Website. DAYS: Duration Addition to ElectricitY Storage. September 2018. https://arpa-e.energy.gov/?q=slick-sheet-project/high- performance-flow-battery-inexpensive-inorganic-reactants-p4000618. University of California, Los Angeles, and ARPA-E. 2017. “Long-Life, Acid-Based Battery.” Government Website. RANGE. September 2017. https://arpa-e.energy.gov/?q=slick-sheet- project/long-life-acid-based-battery. U.S. DRIVE. 2017. “Hydrogen Production Tech Team Roadmap.” Roadmap. Driving Research and Innovation for Vehicle Efficiency and Energy Sustainability. DOE. https://www.energy.gov/sites/prod/files/2017/11/f46/HPTT%20Roadmap%20FY17%20Final_No v%202017.pdf. Venkataramani, Gayathri, Velraj Ramalingam, and Kishore Viswanathan. 2018. “Harnessing Free Energy From Nature For Efficient Operation of Compressed Air Energy Storage System and Unlocking the Potential of Renewable Power Generation.” Scientific Reports 8 (1): 1–11. https://doi.org/10.1038/s41598-018-28025-5. Wang, Jidai, Kunpeng Lu, Lan Ma, Jihong Wang, Mark Dooner, Shihong Miao, Jian Li, and Dan Wang. 2017. “Overview of Compressed Air Energy Storage and Technology Development,” 22. Warner, John. 2015. The Handbook of Lithium-Ion Battery Pack Design. Elsevier. https://doi.org/10.1016/C2013-0-23144-5. 44 This report is available at no cost from the National Renewable Energy Laboratory (NREL) at www.nrel.gov/publications.

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