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Sr(NH_3)_8Cl_2-Expanded Natural Graphite composite for thermochemical heat storage applications studied by in-situ neutron imaging

机译:SR(NH_3)_8CL_2-扩展的天然石墨复合材料,用于采用原位中子成像研究的热化学蓄热应用

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摘要

This work presents an in-situ neutron imaging study of the ammonia sorption reaction in a SrCl2-Expanded Natural Graphite (ENG) composite loaded into a honeycomb-shaped stainless-steel scaffold and enclosed in a thermochemical heat storage (THS) reactor prototype. The performance of SrCl2/Sr(NH3)(8)Cl-2-ENG under different pressures and temperatures was investigated and the spatio-temporal content of ammonia was calculated from neutron radiograms. Quantitative image analysis revealed the formation of Sr(NH3)(8)Cl-2 upon ammonia uptake, while the desorption studies revealed a partial ammonia desorption resulting in the formation of the monoamine phase Sr(NH3)Cl-2 via a stepwise release of ammonia. Neutron imaging also allowed the indirect evaluation of the stainless-steel honeycomb heat conductivity and showed that heat is transferred prevalently via the ENG matrix. Finally, neutron tomography of the reactor prototype was performed to ensure the stability of the THS system and composite material throughout the ammonia cycling experiments.
机译:该工作呈现了一种原位中子成像研究,在蜂窝状的不锈钢支架中的SrCl2-膨胀的天然石墨(ENG)复合材料中的氨吸附反应的原位中子成像研究。封闭在热化学蓄热器(THS)反应器原型中。研究了SRCL2 / Sr(NH3)(8)Cl-2-ENG的性能,并在不同压力和温度下进行了氨的时空含量从中子射线测量计算。定量图像分析显示氨吸收时Sr(NH3)(8)Cl-2的形成,而解吸研究表明,通过逐步释放形成单氨基相Sr(NH 3)Cl-2的部分氨解吸氨。中子成像还允许间接评估不锈钢蜂窝导热率,并显示通过ENG基质普遍地传递热量。最后,进行了反应器原型的中子断层扫描,以确保在整个氨循环实验中的THS系统和复合材料的稳定性。

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