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首页> 外文期刊>Journal of Chemical Engineering of Japan >Thermal Conductivity Measurements of Expanded Graphite-Magnesium Hydroxide Composites for Packed Bed Reactors of Chemical Heat Storage/Pump Systems
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Thermal Conductivity Measurements of Expanded Graphite-Magnesium Hydroxide Composites for Packed Bed Reactors of Chemical Heat Storage/Pump Systems

机译:化学蓄热/泵系统填充床反应器用膨胀石墨-氢氧化镁复合材料的导热系数测量

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摘要

References(19) This paper investigates the use of expanded graphite (EG) as a thermal conductivity enhancer for packed bed reactor materials in a chemical heat storage/pump system based on magnesium hydroxide (Mg(OH)2) dehydration and magnesium oxide (MgO) hydration reactions. Composites of Mg(OH)2 powder mixed with EG (hereafter termed EM composites) were developed by varying the mass mixing ratios of Mg(OH)2 to EG (ψ). EM composites and pure Mg(OH)2 powder were compacted in slab configurations (width 20 mm×length 100 mm×variable thickness 20–38 mm) and the thermal conductivities of the slabs were measured as a function of the slab density and ψ. Using EG as a thermal conductivity enhancer in the composite improved the thermal conductivity of the EM slab six-fold relative to that using pure Mg(OH)2. Evaluation of the thermal effusivity and chemical heat storage capacity showed that EM prepared with a mass ratio of ψ=8 allowed achievement of good heat transfer performance without negatively impacting the chemical heat storage capacity.
机译:参考文献(19)本文研究了基于氢氧化镁(Mg(OH)2)脱水和氧化镁(MgO)的膨胀石墨(EG)在化学储热/泵系统中用作填充床反应器材料的导热增强剂的用途)水合反应。通过改变Mg(OH)2与EG的质量混合比(ψ)来开发与EG混合的Mg(OH)2粉末的复合物(以下称为EM复合物)。将EM复合材料和纯Mg(OH)2粉末压制成板状结构(宽20 mm×长100 mm×可变厚度20-38 mm),并根据板密度和ψ测量板的热导率。与使用纯Mg(OH)2相比,在复合材料中使用EG作为导热率增强剂可将EM平板的导热率提高六倍。热效率和化学储热能力的评估表明,以质量比为ψ= 8制备的EM可以实现良好的传热性能,而对化学储热能力没有负面影响。

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