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Thermochemical energy storage of concentrated solar power by integration of the calcium looping process and a CO2 power cycle

机译:通过整合钙循环过程和CO2功率循环,来集中太阳能的热化学能量存储

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摘要

Energy storage is the main challenge for a deep penetration of renewable energies into the grid to overcome their intrinsic variability. Thus, the commercial expansion of renewable energy, particularly wind and solar, at large scale depends crucially on the development of cheap, efficient and non-toxic energy storage systems enabling to supply more flexibility to the grid. The Ca-Looping (CaL) process, based upon the reversible carbonation/calcination of CaO, is one of the most promising technologies for thermochemical energy storage (TCES), which offers a high potential for the long-term storage of energy with relatively small storage volume. This manuscript explores the use of the CaL process to store Concentrated Solar Power (CSP). A CSP-CaL integration scheme is proposed mainly characterized by the use of a CO2 closed loop for the CaL cycle and power production, which provides heat decoupled from the solar source and temperatures well above the 550 degrees C limit that poses the use of molten salts currently used to store energy as sensible heat. The proposed CSP-CaL integration leads to high values of plant global efficiency (of around 45-46%) with a storage capacity that allows for long time gaps between load and discharge. Moreover, the use of environmentally benign, abundantly available and cheap raw materials such as natural limestone would mark a milestone on the road towards the industrial competitiveness of CSP. (C) 2016 Elsevier Ltd. All rights reserved.
机译:储能是可再生能源深入渗透电网以克服其固有可变性的主要挑战。因此,可再生能源,特别是风能和太阳能的大规模商业扩展,关键取决于廉价,高效和无毒的储能系统的发展,从而为电网提供更大的灵活性。基于CaO的可逆碳酸化/煅烧的Ca-Looping(CaL)工艺是最有前途的热化学能量存储(TCES)技术之一,该技术具有相对较小的长期能量存储潜力储存量。该手稿探讨了使用CaL流程存储集中式太阳能(CSP)的方法。提出了一种CSP-CaL集成方案,其主要特征是在CaL循环和发电过程中使用了一个CO2闭环,它提供了与太阳能解耦的热量以及温度远高于550摄氏度的极限,这导致使用熔融盐目前用于将能量存储为显热。提议的CSP-CaL集成可带来很高的工厂全局效率值(大约为45-46%),并且存储容量允许在负载和放电之间存在较长的时间间隔。此外,使用对环境无害的,可得的,廉价的原材料(例如天然石灰石)将标志着CSP工业竞争力之路上的一个里程碑。 (C)2016 Elsevier Ltd.保留所有权利。

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