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A working pair of CaCl2-LiBr-LiNO3/H2O and its application in a single-stage solar-driven absorption refrigeration cycle

机译:一种工作对CaCl2-Lib-Lino3 / H2O及其在单级太阳能驱动吸收制冷循环中的应用

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In this paper, a working pair of CaCl2-LiBr-LiNO3(8.72: 1 : 1)/H2O has been proposed for a single-stage absorption refrigeration system driven by solar energy collected with flat plate solar collectors or vacuum glass tube solar collectors. The crystallization temperature, saturated vapor pressure, specific heat capacity, and specific enthalpy of the proposed working pair were systematically measured. Results showed that under the same refrigeration conditions, the required solar collecting temperature of the single-stage absorption refrigeration cycle based on CaCl2-LiBr-LiNO3(8.72: 1 : 1)/H2O was 7.7 degrees C lower than that based on LiBr/H2O. Furthermore, the COP of the cycle based on CaCl2-LiBr-LiNO3(8.72:1 : 1)/H2O was approximately 0.04 higher than that based on LiBr/H2O. The corrosion rates of 316L stainless steel as the structure material and copper as the heat exchange material for the proposed working pair were low enough for practical applications. (c) 2017 Elsevier Ltd and IIR. All rights reserved.
机译:本文,已提出了一种由用平板太阳能收集器或真空玻璃管太阳能收集器收集的太阳能驱动的单级吸收制冷系统的CaCl2-Lib-LinO3(8.72:1:1)/ H2O。系统地测量结晶温度,饱和蒸气压,比热容和所提出的工作对的特异性焓。结果表明,在相同的制冷条件下,基于CaCl2-Lib-LinO3(8.72:1:1)/ H2O的单级吸收制冷循环所需的太阳能收集温度为7.7摄氏度,基于Libt / H2O 。此外,基于CaCl2-Lib-LinO3(8.72:1:1)/ H 2 O的循环COP约为0.04,基于LIBR / H2O。 316L不锈钢作为结构材料和铜作为所提出的工作对的热交换材料的腐蚀速率对于实际应用足够低。 (c)2017年Elsevier Ltd和IIR。版权所有。

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