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Screening of thermochemical systems based on solid-gas reversible reactions for high temperature solar thermal energy storage

机译:基于固态气体可逆反应的高温化学热库热化学系统的筛选

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viable way to manage the inherently intermittent availability of solar energy in concentrated solar power plants is to store solar energy during on-sun hours to be able to use it later during off-sun hours, enabling on-demand electricity delivery. Thermochemical heat storage systems present some noteworthy advantages when compared with latent and sensible heat storage, namely (i) high energy storage density because the storage capacity by unit of mass or volume corresponding to the reaction enthalpy is generally high, (ii) heat storage at room temperature and long term energy storage because the products can be cooled and stored at room temperature without energy losses as heat can be stored indefinitely in chemical bonds, (iii) facility of transport because solid materials can be transferred over long distances, (iv) constant restitution temperature providing constant heat source because exothermic reactions are carried out at sufficiently high temperatures to generate electricity in constant conditions and therefore to produce a constant power. This paper presents an overview of the different potential thermochemical systems based on reversible solid-gas reactions operating at high temperatures and a screening of suitable materials that are interesting candidates in the 400-1200 degrees C range for thermochemical heat storage in concentrated solar power systems. The most promising materials belonging to the metal oxides, hydroxides, and carbonates solid-gas systems are selected for experimental validation and further investigations. (C) 2016 Elsevier Ltd. All rights reserved.
机译:管理集中式太阳能发电厂内在的间歇性太阳能可用性的可行方法是在日照时存储太阳能,以便以后在日照时使用太阳能,从而实现按需供电。与潜热和显热储能相比,热化学储热系统具有一些值得注意的优势,即(i)高能量存储密度,因为与反应焓相对应的质量或体积单位的存储容量通常很高,(ii)室温和长期储能,因为产品可以在室温下冷却和储藏,而不会损失能量,因为热量可以无限期地以化学键的形式存储,(iii)运输工具,因为固体材料可以长距离传输,(iv)恒定的恢复温度提供了恒定的热源,因为放热反应是在足够高的温度下进行的,以在恒定的条件下发电,因此产生恒定的功率。本文概述了基于在高温下运行的可逆固体气体反应的不同潜在热化学系统的概述,并筛选了合适的材料,这些材料在400-1200摄氏度范围内是集中太阳能发电系统中热化学储热的有趣候选材料。选择属于金属氧化物,氢氧化物和碳酸盐固体气体系统的最有前途的材料进行实验验证和进一步研究。 (C)2016 Elsevier Ltd.保留所有权利。

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