USAID GRID-SCALE ENERGY STORAGE TECHNOLOGIES PRIMER

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Lockhart, Eric, Xiangkun Li, Samuel Booth, James Salasovich, Dan Olis, James Elsworth, and Lars Lisell. 2019. “Comparative Study of Techno-Economics of Lithium-Ion and Lead-Acid Batteries In Micro-Grids In Sub-Saharan Africa.” NREL. Long, Benjamin. 2019. “Breakthrough Boosts Performance of Sodium-Sulfur Batteries - University of Wollongong – UOW.” News Release. University of Wollongong. November 18, 2019. https://www.uow.edu.au/media/2019/breakthrough-boosts-performance-of-sodium-sulfur- batteries.php. Lotspeich, Chris. 2002. “A Comparative Assessment of Flow Battery Technologies.” Sandia National Laboratories. https://www.sandia.gov/ess-ssl/EESAT/2002_papers/00007.pdf. Lu, Xiaochuan, Brent W Kirby, Wu Xu, Guosheng Li, Jin Y Kim, and John P Lemmon. 2013. “Advanced Intermediate-Temperature Na–S Battery.” Environmental Science, 8. Luo, Xing, Jihong Wang, Mark Dooner, and Jonathan Clarke. 2015. “Overview of Current Development in Electrical Energy Storage Technologies and the Application Potential in Power System Operation.” Applied Energy 137 (January): 511–36. https://doi.org/10.1016/j.apenergy.2014.09.081. Mangaraj, M., A. K. Panda, and T. Penthia. 2016. “Supercapacitor Supported DSTATCOM for Harmonic Reduction and Power Factor Correction.” In 2016 IEEE Students’ Conference on Electrical, Electronics and Computer Science (SCEECS), 1–6. https://doi.org/10.1109/SCEECS.2016.7509275. Maxwell Technologies. 2018. “Maxwell Ultracapacitors: Enabling Energy’s Future.” Maxwell Technologies. 2018. https://www.maxwell.com/products/ultracapacitors. Melaina, M, and J Eichman. 2015. “Hydrogen Energy Storage: Grid and Transportation Services.” Technical Report NREL/TP-5400-62518. Golden, CO: National Renewable Energy Laboratory. https://www.nrel.gov/docs/fy15osti/62518.pdf. Minke, Christine, and Thomas Turek. 2018. “Materials, System Designs and Modelling Approaches in Techno-Economic Assessment of All-Vanadium Redox Flow Batteries – A Review.” Journal of Power Sources 376 (February): 66–81. https://doi.org/10.1016/j.jpowsour.2017.11.058. Mongird, K, V Viswanathan, P Balducci, J Alam, V Fotedar, V Koritarov, and B Hadjerioua. 2019a. “Energy Storage Technology and Cost Characterization Report.” Technical Report PNNL-28866. Hydrowires Report. Washington, DC: DOE. https://www.energy.gov/sites/prod/files/2019/07/f65/Storage%20Cost%20and%20Performance% 20Characterization%20Report_Final.pdf. Mongird, Kendall, Vilayanur Viswanathan, Jan Alam, Charlie Vartanian, Vincent Sprenkle, and Richard Baxter. 2020. “2020 Grid Energy Storage Technology Cost and Performance Assessment.” Technical Report DOE/PA-0204. Richland, WA: PNNL. https://www.pnnl.gov/sites/default/files/media/file/Final%20- %20ESGC%20Cost%20Performance%20Report%2012-11-2020.pdf Nagarajan, Adarsh, Dylan Cutler, Aadil Latif, Xiangkun Li, Richard Bryce, Ying Shi, Jin Tan, et al. 2018. “Value Streams from Distribution Grid Support Using Utility-Scale Vanadium Redox Flow Battery: NREL-Sumitomo Electric Battery Demonstration Project.” NETL. 2015. “Hazle Spindle, LLC Beacon Power 20 MW Flywheel Frequency Regulation Plant.” https://www.smartgrid.gov/files/OE0000200_HazleSpindle_FactSheet.pdf. Nguyen, Trung, and Robert Savinell. 2010. “Flow Batteries.” The Electrochemical Society Interface 19 (3). https://iopscience.iop.org/article/10.1149/2.F06103if. Nikiforidis, Georgios. 2019. “High and Intermediate Temperature Sodium–Sulfur Batteries for Energy Storage: Development, Challenges and Perspectives.” RSC Advances, 25. NREL. 2015. “Concentrating Solar Power Projects.” 2015. https://solarpaces.nrel.gov/. Parker, Carl D. 2001. “Lead–Acid Battery Energy-Storage Systems for Electricity Supply Networks.” Journal of Power Sources, 11. Primus Power, and ARPA-E. 2018. “Minimal Overhead Storage Technology for Duration Addition to Electricity Storage.” Government Website. DAYS: Duration Addition to ElectricitY Storage. 43 This report is available at no cost from the National Renewable Energy Laboratory (NREL) at www.nrel.gov/publications.

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