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Kinetic Characterization of Composite Sorbents of Ethanol for Adsorptive Cooling Applications

机译:吸附冷却应用乙醇复合吸附剂的动力学表征

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The present paper reports the experimental characterization of dynamic performance of real adsorber configurations (AdHExs) based on the employment of two composite adsorbents of ethanol, developed at the Boreskov Institute of Catalysis (BIC), for adsorptive air cooling and ice making applications. In particular, the main aim of the investigation is the evaluation of the achievable specific cooling capacity of the different tested configurations under typical air conditioning cycle. Experimental tests have been performed by means of a recently developed gravimetric apparatus, based on the Large Temperature Jump approach, installed at the CNR-ITAE laboratories. Several AdHEx configurations have been analyzed to evaluate the influence of HEx geometry, adsorbent material and grain size on the overall kinetic performance. The results demonstrate that desorption stages are mainly dominated by AdHEx heat transfer. On the contrary, the adsorption stages are controlled both by inter-granular and intra-granular diffusion resistances. In particular, the intra-granular diffusion is limited by the available free pore volume. The reaction process between ethanol and inorganic salt can affect the sorption/desorption dynamics as well. As already reported in other works, also in this case characteristic adsorption times is longer than desorption one. Finally, a comparison to the kinetic performance of similar AdHEx configurations employing AQSOA-Z02/water working pair demonstrated comparable desorption kinetics, while the adsorption stage is usually twice faster for AQSOA-Z02. Starting from the experimental data, a maximum specific cooling capacity of 2.0 kW/kg has been obtained for the optimized AdHEx configuration.
机译:本文报告了真实吸附剂配置(ADHEX)的动态性能的实验表征,基于在Boryskov催化作用(BIC)的两种复合吸附剂,用于吸附空气冷却和制冰应用。特别是,调查的主要目的是在典型的空调循环下评估不同测试配置的可实现的特定冷却能力。基于在CNR-ITAE实验室的大型温度跳转方法的基础上,通过最近开发的重量装置进行了实验测试。已经分析了几种ADHEX配置以评估六角形几何形状,吸附材料和粒度对整体动力学性能的影响。结果表明解吸阶段主要由ADHEX传热主导。相反,吸附阶段通过颗粒间和粒状扩散电阻控制。特别地,颗粒内扩散受到可用的自由孔体积的限制。乙醇和无机盐之间的反应过程也会影响吸附/解吸动力学。如其他作品所报道,在这种情况下,特征吸附时间比解吸更长。最后,与采用AQSOA-Z02 /水工作对的类似ADHEX配置的动力学性能的比较证明了可比较的解吸动力学,而AQSOA-Z02的吸附阶段通常是更快的两倍。从实验数据开始,已经获得了最大特定的冷却能力为2.0kW / kg的优化的ADHEX配置。

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