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◆ PRX Energy2026-01-20· Waste heat

Assessing Waste Heat Utilization in Power-to-Heat-to-Power Storage Systems for Cost-Effective Building Electrification

Alicia López-Ceballos, Alejandro Datas

原始摘要(英文原文)· Original abstract
Fully electrifying the building sector requires not only the widespread adoption of photovoltaic (PV) self-consumption and heat pumps, but also the integration of cost-effective energy-storage solutions. Hybridizing lithium-ion ( Li -ion) batteries with power to heat to power storage (PHPS) systems—thermal batteries capable of thermal-to-electric energy conversion—offer a promising and economically viable solution. PHPS systems dispatch combined heat and power by utilizing the low-temperature waste heat generated during the thermal-to-electric energy-conversion process. This study investigates the technoeconomic impacts of waste heat use in PHPS systems integrated with Li -ion batteries and heat pumps to support the decarbonization of the building sector. Two distinct strategies are evaluated: (1) direct use of waste heat to meet heating demands; and (2) the use of waste heat to enhance the heat pump’s coefficient of performance. Results show that supplying the waste heat at the demand setpoint temperature is the best solution to integrate PHPS cost effectively, although enhancing the heat pump’s COP with waste heat also yields notable economic gains. Additionally, leveraging waste heat significantly lowers the minimum thermal-to-electric conversion efficiency required for PHPS systems to achieve economic viability. Optimal PHPS designs enable large-scale energy storage and charging capacities, thereby enhancing PV self-consumption rates and reducing the levelized cost of energy. The analysis also reveals that hybridizing PHPS with Li -ion batteries may rise as the optimal solution for moderately priced PHPS systems, with the reduction in levelized cost being more pronounced in solar-dominated regions.
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Assessing Waste Heat Utilization in Power-to-Heat-to-Power Storage Systems for Cost-Effective Building Electrification — 科研速览 Science Skim