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The performance of two adsorption ice making test units using activated carbon and a carbon composite as adsorbents

机译:使用活性炭和碳复合材料作为吸附剂的两个吸附制冰测试装置的性能

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摘要

The available adsorption working pairs applied to adsorption refrigeration system, which utilize activated carbon as adsorbent, are mainly activated carbon-methanol, activated carbon-ammonia, and composite adsorbent-ammonia. The adsorption properties and refrigeration application of these three types of adsorption working pairs are investigated. For the physical adsorbents, consolidated activated carbon showed best heat transfer performance, and activated carbon-methanol showed the best adsorption property because of the large refrigerant amount that can be adsorbed. For the composite adsorbents, the consolidated composite adsorbent with mass ratio of 4:1 between CaCl_2 and activated carbon, showed the highest cooling density when compared to the granular composite adsorbent and to the merely chemical adsorbent. The physical adsorption icemaker that employs consolidated activated carbon-methanol as working pair had the optimum coefficient of refrigeration performance (COP), volume cooling power density (SCP_v) and specific cooling power per kilogram adsorbent (SCP) of 0.125, 9.25 kW/m~3 and 32.6 W/kg, respectively. The composite adsorption system that employs the consolidated composite adsorbent had a maximum COP, SCP_v and SCP of 0.35, 52.68 kW/m~3 and 493.2 W/kg, respectively, for ice making mode. These results are improved by 1.8, 4.7 and 14 times, respectively, when compared to the results of the physical adsorption icemaker.
机译:应用于以活性炭为吸附剂的吸附制冷系统的可用吸附工作对主要为活性炭-甲醇,活性炭-氨和复合吸附剂-氨。研究了这三种类型的吸附工作对的吸附性能和制冷应用。对于物理吸附剂,固结活性炭表现出最佳的传热性能,而活性炭-甲醇表现出最佳的吸附性能,因为它可以吸附大量的制冷剂。对于复合吸附剂,与颗粒状复合吸附剂和仅化学吸附剂相比,固结的复合吸附剂在CaCl_2和活性炭之间的质量比为4:1,显示出最高的冷却密度。以固结活性炭-甲醇为工作对的物理吸附制冰机的最佳制冷性能系数(COP),体积冷却功率密度(SCP_v)和每千克吸附剂的比冷却功率(SCP)分别为0.125、9.25 kW / m〜 3和32.6 W / kg。对于制冰模式,采用固结复合吸附剂的复合吸附系统的最大COP,SCP_v和SCP分别为0.35、52.68 kW / m〜3和493.2 W / kg。与物理吸附制冰机的结果相比,这些结果分别提高了1.8倍,4.7倍和14倍。

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