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Structural Characterisation and Chemical Stability of Commercial Fibrous Carbons in Molten Lithium Salts

机译:熔融锂盐中商品纤维碳的结构表征和化学稳定性

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摘要

The growing trend towards sustainable energy production, while intermittent, can meet all the criteria of energy demand through the use and development of high-performance thermal energy storage (TES). In this context, high-temperature hybrid TES systems, based upon the combination of fibrous carbon hosts and peritectic phase change materials (PCMs), are seen as promising solutions. One of the main conditions for the operational viability of hybrid TES is the chemical inertness between the components of the system. Thus, the chemical stability and compatibility of several commercial carbon felts (CFs) and molten lithium salts are discussed in the present study. Commercial CFs were characterised by elemental analysis, X-ray diffraction (XRD) and Raman spectroscopy before being tested in molten lithium salts: LiOH, LiBr, and the LiOH/LiBr peritectic mixture defined as our PCM of interest. The chemical stability was evaluated by gravimetry, gas adsorption and scanning electron microscopy (SEM). Among the studied CFs, the materials with the highest carbon purity and the most graphitic structure showed improved stability in contact with molten lithium salts, even under the most severe test conditions (750 °C). The application of the Arrhenius law allowed calculating the activation energy (in the range of 116 to 165 kJ mol ), and estimating the potential stability of CFs at actual application temperatures. These results confirmed the applicability of CFs as porous hosts for stabilising peritectic PCMs based on molten lithium salts.
机译:可持续能源生产的增长趋势虽然是断断续续的,但可以通过使用和开发高性能热能存储(TES)来满足能源需求的所有标准。在这种情况下,基于纤维碳基质和包晶相变材料(PCM)的组合的高温混合TES系统被认为是很有前途的解决方案。混合TES运行可行性的主要条件之一是系统各组件之间的化学惰性。因此,在本研究中讨论了几种商用碳毡(CF)和熔融锂盐的化学稳定性和相容性。商业CFs在元素锂,LiOH,LiBr和LiOH / LiBr包晶混合物被定义为我们感兴趣的PCM锂盐中测试之前,通过元素分析,X射线衍射(XRD)和拉曼光谱进行了表征。通过重量分析,气体吸附和扫描电子显微镜(SEM)评估化学稳定性。在所研究的碳纤维中,即使在最苛刻的测试条件(750°C)下,具有最高碳纯度和最石墨结构的材料也显示出与熔融锂盐接触的改进的稳定性。阿雷尼乌斯定律的应用允许计算活化能(在116至165 kJ mol的范围内),并估计CFs在实际应用温度下的潜在稳定性。这些结果证实了CFs作为基于多孔锂盐稳定包晶PCM的多孔基质的适用性。

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