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The Phase Change Materials (PCMs) can significantly enhance the building energy efficiency by incorporating thermal energy storage into concrete. . Cement offers unique properties that make it suitable for renewable energy storage: Abundance and Low Cost: Cement is widely available, making it more affordable than rare metals used in conventional batteries. The present paper provides an analysis of the application of Hybrid PCM -Embedded Concrete (HPCMC) to address the low thermal conductivity and thermal. . Because energy storage systems (ESSs) play a critical role in boosting the efficiency of renewable energy sources and economizing energy generation, different ESSs and their applications in various environments must be comprehensively investigated. With sustained growth in the global demand for. . Cement energy storage technologies encompass innovative methods that leverage cement-based materials and systems for energy storage, thus addressing the growing demand for renewable energy solutions. These technologies include various types of thermal energy storage systems using cement as the. . A research team from Southwest University in China, led by Professor Zhou Yang, has developed a cement-based material that can both generate and store electricity. The composite combines traditional cement with a polyvinyl alcohol (PVA) hydrogel, resulting in a material that offers structural. . On-site renewable energy can play a key role in the cement industry's plans to support carbon-neutral concrete by 2050 while mitigating high fluctuations in energy costs. The increasing priority of decarbonization and corporate ESG (environmental, social, and governance) performance creates a. .