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THERMAL ENERGY STORAGE Outlook

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THERMAL ENERGY STORAGE Outlook ( thermal-energy-storage-outlook )

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Figure 10: TES technology status and innovation outlook in the district heating and cooling sector District heating and cooling Applied research Latent Thermo- chemical Short term (5 years) Commercial Cost (USD/kWh) 2018 2030 0.1-35 0.1-25 60-230 45-185 15-150 15-120 Prototype Demonstration Efficiency (%) 2018 2030 55-90 65-90 >90 >92 Long term (10+ years) Lifetime (years) 2018 2030 10-30 20-30 10-20 >25 15-25 20-25 Temperature (oC) 2018 2030 5-95 5->95 0-750 0-750 15- 15- 150 150 Solid state UTES1,2 TTES1,2 Sub-zero phase- change materials2 High temp. phase- change materials1 Ice2 Absorption systems1,2 Salt hydration1,2 Sensible • Improvements in integration and management of TTES could significantly reduce costs and expand deployment opportunities. • PCMs and thermochemical systems are anticipated to enhance opportunities for combined cooling and power applications. • Sector integration and smart control technologies will facilitate the harvesting (and storage) of waste heat/cold from other sectors and applications. Medium term (5-10 years) • Ongoing research and demonstration of PCMs for use in cooling are expected to drive wider deployment. 40- 50% 50-65 Note: Magnifying glass means value not available due to low technology readiness level; (1) For district heating; (2) For district cooling. THERMAL ENERGY STORAGE 29

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