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首页> 外文期刊>Energy Conversion & Management >Hybrid strontium bromide-natural graphite composites for low to medium temperature thermochemical energy storage: Formulation, fabrication and performance investigation
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Hybrid strontium bromide-natural graphite composites for low to medium temperature thermochemical energy storage: Formulation, fabrication and performance investigation

机译:中低温热化学储能的混合溴化锶-天然石墨复合材料:配方,制造和性能研究

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摘要

Thermochemical energy storage has the potential to provide efficient, compact and long duration storage of thermal energy. Major advancements, however, are needed for such a technology to meet performance and cost targets. Here we present a study on novel composites for low to medium temperature thermochemical energy storage ( 150 degrees C) with an aim to maximize energy density and to understand the associated mass and heat transport phenomena. The composites were made of strontium bromide hexahydrate and natural graphite with the latter acting as a supporting matrix. We used a simple manufacturing method to fabricate the composites and experimentally characterized the performance of the materials using various methods including thermo-gravimetry, laser flash analysis and dynamic vapor sorption. The results showed that the composites achieved an energy density above 600 kJ/kg with the storage process occurring mostly below similar to 100 degrees C - a promising feature for domestic applications. The results also showed that the natural graphite could improve the hydration-dehydration kinetics by reducing hysteresis and a fourfold increase in the thermal conductivity could be achieved with 20% of natural graphite in the composite.
机译:热化学能量存储具有提供有效,紧凑且持续时间长的热能的潜力。但是,要使这种技术达到性能和成本目标,就需要进行重大改进。在这里,我们提出了一种用于中低温热化学能量存储(<150摄氏度)的新型复合材料的研究,旨在最大程度地提高能量密度并了解相关的质量和热传输现象。该复合物由六水合溴化锶和天然石墨制成,后者用作支撑基质。我们使用一种简单的制造方法来制造复合材料,并通过各种方法(包括热重分析,激光闪光分析和动态蒸气吸附)对材料的性能进行了实验表征。结果表明,复合材料的能量密度超过600 kJ / kg,存储过程大多低于100摄氏度,这对于家庭应用而言是一个很有希望的特征。结果还表明,天然石墨可以通过降低滞后性来改善水合-脱水动力学,并且在复合材料中使用20%的天然石墨可以使导热系数提高四倍。

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