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Experimental investigation of an open thermochemical process operating with a hydrate salt for thermal storage of solar energy: Local reactive bed evolution

机译:用水合盐运行太阳能热存储的开放式热化学过程的实验研究:局部反应床的演变

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Their high energy density and low heat losses between storage and recovery times make thermochemical processes a promising way to achieve long-term (seasonal) storage. Among the available reactor configurations, open systems using a packed bed of reactive solid are simple and efficient. This paper reports on the local operation and reactive bed behavior of such systems. Mass transfer changes within the reactive bed, which is the main limitation of such systems, was investigated using several state variables (reaction advancement, pressure drop across the salt bed and bed temperatures). Results from two experimental set-ups were analyzed: a small bench for mass transfer characterization, and a prototype at a larger scale. Both used SrBr2/H2O as reactive pair.
机译:它们的高能量密度和在存储与恢复之间的低热量损失使热化学工艺成为实现长期(季节性)存储的一种有前途的方法。在可用的反应器配置中,使用反应性固体填充床的开放系统既简单又有效。本文报告了此类系统的本地操作和反应床行为。反应床内的传质变化是此类系统的主要局限性,它使用几种状态变量(反应进行,盐床两端的压降和床温)进行了研究。分析了来自两个实验装置的结果:一个用于传质表征的小型工作台,一个大规模的原型。两者都使用SrBr2 / H2O作为反应对。

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