首页> 外文会议>Advances in heat transfer and energy conservation >Pairs SrCl2-NH4Cl-NH3 and CaCl2-BaCl2-NH3 for a Two-stage Adsorption Freezing Cycle Driven by Low-temperature Heat Source
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Pairs SrCl2-NH4Cl-NH3 and CaCl2-BaCl2-NH3 for a Two-stage Adsorption Freezing Cycle Driven by Low-temperature Heat Source

机译:SrCl2-NH4Cl-NH3和CaCl2-BaCl2-NH3对用于低温热源驱动的两阶段吸附冻结循环

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As an environmental benign and energy saving refrigeration technology, adsorption refrigeration has a great potential for the utilization of a low-grade energy, such as solar energy and industrial waste heat below 100oC. A two-stage adsorption refrigeration cycle was proposed based on adsorption refrigeration process and resorption process. Refrigeration performances of the working pairs were tested at different evaporation and condensation temperature. The results show that the present two-stage adsorption refrigeration cycle could obtain cooling output with -25℃ when the temperature of heat resource was 70℃.The adsorption quantity of SrCl2 and CaCl2 are both more than 94% of theoretical adsorption quantity. Compared with SrCl2-NH4Cl-NH3 and CaCl2-BaCl2-NH3, generally the working pair of CaCl2-BaCl2-NH3 has optimal data of COP while the working pair of SrCl2-NH4Cl-NH3 has the optimal data of SCP. The maximum COP and SCP of the cycle were 0.25 and 0.25, 230.6W/kg and 278.7W/kg, respectively, for the working pairs of SrCl2-NH4Cl-NH3 and CaCl2-BaCl2-NH3, when the temperature of the cooling water was 25℃.
机译:吸附式制冷作为一种环保,节能的制冷技术,具有利用低品位能源的巨大潜力,例如太阳能和低于100oC的工业废热。基于吸附制冷过程和吸收过程,提出了两阶段吸附制冷循环。在不同的蒸发和冷凝温度下测试了工作对的制冷性能。结果表明,当热源温度为70℃时,本两级吸附式制冷循环可在-25℃获得冷却输出。SrCl2和CaCl2的吸附量均超过理论吸附量的94%。与SrCl2-NH4Cl-NH3和CaCl2-BaCl2-NH3相比,通常CaCl2-BaCl2-NH3的工作对具有COP的最佳数据,而SrCl2-NH4Cl-NH3的工作对具有SCP的最佳数据。对于SrCl2-NH4Cl-NH3和CaCl2-BaCl2-NH3的工作对,当冷却水的温度为时,该循环的最大COP和SCP分别为0.25和0.25、230.6W / kg和278.7W / kg。 25℃。

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