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首页> 外文期刊>Renewable & Sustainable Energy Reviews >The Calcium-Looping (CaCO_3/CaO) process for thermochemical energy storage in Concentrating Solar Power plants
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The Calcium-Looping (CaCO_3/CaO) process for thermochemical energy storage in Concentrating Solar Power plants

机译:集中式太阳能发电厂中热化学能量存储的钙循环(CaCO_3 / CaO)工艺

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摘要

Energy storage based on thermochemical systems is gaining momentum as a potential alternative to molten salts in Concentrating Solar Power (CSP) plants. This work is a detailed review about the promising integration of a CaCO3/CaO based system, the so-called Calcium-Looping (CaL) process, in CSP plants with tower technology. The CaL process relies on low cost, widely available and non-toxic natural materials (such as limestone or dolomite), which are necessary conditions for the commercial expansion of any energy storage technology at large scale. A comprehensive analysis of the advantages and challenges to be faced for the process to reach a commercial scale is carried out. The review includes a deep overview of reaction mechanisms and process integration schemes proposed in the recent literature. Enhancing the multicycle CaO conversion is a major challenge of the CaL process. Many lab-scale analyses carried out show that residual effective CaO conversion is highly dependent on the process conditions and the CaO precursors used, reaching values in a wide range (0.07-0.82). The selection of the optimal operating conditions must be based on materials performance, process integration, technology and economics aspects. Global plant efficiencies over 45% (without considering solar-side losses) show the interest of the technology. Furthermore, the technological maturity and potential of the process is assessed. The direction towards which future works should be headed is discussed.
机译:基于热化学系统的能量存储正在成为聚光太阳能(CSP)工厂中熔融盐的潜在替代品。这项工作是对采用塔式技术的CSP工厂中基于CaCO3 / CaO的系统(即所谓的钙循环(CaL)工艺)的有希望的集成的详细审查。 CaL工艺依赖于低成本,可广泛获得且无毒的天然材料(例如石灰石或白云石),这是大规模扩展任何储能技术商业化的必要条件。对达到商业规模的过程所面临的优势和挑战进行了全面分析。审查包括对最近的文献中提出的反应机理和过程整合方案的深入概述。增强多周期CaO转化是CaL工艺的主要挑战。进行的许多实验室规模分析表明,残留的有效CaO转化率高度依赖于工艺条件和所用的CaO前体,达到的值范围很广(0.07-0.82)。最佳运行条件的选择必须基于材料性能,工艺集成,技术和经济方面。全球工厂效率超过45%(不考虑太阳能侧损耗)表明了该技术的重要性。此外,评估了该工艺的技术成熟度和潜力。讨论了未来工作的方向。

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