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    钙基热化学储能技术及其耦合太阳能热利用的研究进展

    Research progress in calcium-based thermochemical energy storage technology and its integration with solar thermal utilization

    • 摘要: 钙基热化学储能技术基于CaO/CaCO3与CaO/Ca(OH)2等体系的可逆反应,实现高效的热量储存与释放。该技术可耦合太阳热能驱动煅烧反应进行储热,并在用电高峰期通过碳酸化放热反应释放高温热能用于发电,从而有效缓解太阳能间歇性问题,提升电站的运行灵活性与发电能力。钙基热化学储能技术具有材料来源广泛、成本低廉以及储能密度高等优势,被认为是一种具有广阔应用前景的大规模储热技术。然而,钙基材料在长期循环使用过程中易发生烧结失活与磨损等问题,在太阳辐照环境下尤为突出;此外,反应器结构设计与系统集成优化等方面也面临诸多挑战。系统综述了钙基热化学储能技术与太阳能发电耦合的最新研究进展,重点从储能材料改性、面向太阳能热利用的直接与间接辐照反应器开发,以及太阳能钙循环耦合系统的热力集成优化3个方面,梳理了关键研究成果,总结了当前存在的主要技术瓶颈,并对未来研究方向进行了展望。

       

      Abstract: Calcium-based thermochemical energy storage technology utilizes reversible reactions (namely, CaO/CaCO3 and CaO/Ca(OH)2 systems), to achieve efficient thermal energy storage and release. This technology can be integrated with solar thermal energy to drive the calcination reaction for heat storage, while the carbonation exothermic reaction provides high-temperature heat during peak electricity demand for power generation. This effectively mitigates the intermittency of solar energy and promotes the operational flexibility and power generation capacity of power plants. With advantages such as wide availability of raw materials, low cost, and high energy storage density, calcium-based thermochemical energy storage is regarded as a highly promising large-scale thermal energy storage technology. calcium-based materials are susceptible to sintering-induced deactivation and mechanical wear during long-term cycling, a problem exacerbated under solar irradiation conditions. Additionally, challenges exist in reactor structural design and system integration optimization. This paper systematically reviews recent advances in the integration of calcium-based thermochemical energy storage with concentrated solar power generation. It focuses on three critical areas: modification of energy storage materials, development of directly and indirectly irradiated reactors for solar thermal applications, and thermodynamic optimization of solar-driven calcium looping systems. The review summarizes key research efforts, identifies major technical bottlenecks, and outlines promising future research directions.

       

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