Department of Physics, College of Science, Jouf University, Sakaka, 2014, Saudi Arabia.
Department of Physics, Faculty of Science, South Valley University, Qena, 83523, Egypt.
Environ Sci Pollut Res Int. 2021 Aug;28(30):41479-41491. doi: 10.1007/s11356-021-13535-z. Epub 2021 Mar 30.
One of the important ways to the efficiently use of low-grade thermal energy is the adsorption refrigeration technology. However, it has some drawbacks such as low specific cooling power and coefficient of performance, especially under using the conventional adsorption pairs. Therefore, new adsorption pairs are tested in solar adsorption ice-maker and compared with other conventional pairs data from open literature to find the tendency of improving the solar adsorption ice-maker performance. The experimental test rig has been built in Upper Egypt in Qena City. Four different new adsorption pairs of granular activated carbon/R-410A, granular activated carbon/R-511A, Maxsorb III/R-410A, and Maxsorb III/R-511A are used. It is demonstrated that Maxsorb III/R-511A pair based solar adsorption ice-maker produced the highest values for specific cooling power, coefficient of performance, and ice production per 1 kg of adsorbent of approximately 226.7 W/kg, 0.197, and 1.96 kg/kg, respectively. While granular activated carbon/R-410A based solar adsorption ice-maker produced the lowest values of ice production per 1 kg of adsorbent and coefficient of performance of 1.38 kg/kg and 0.104, respectively. Moreover, it can be concluded that the tested pairs are feasible to be used in solar adsorption ice-maker systems, especially in such hot climate of Upper Egypt for food and vaccine preservation and storage.
有效利用低品位热能的重要途径之一是吸附式制冷技术。然而,它存在一些缺点,例如比制冷量和性能系数低,特别是在使用传统吸附对时。因此,在太阳能吸附制冰机中测试了新的吸附对,并与来自开放文献的其他常规对数据进行了比较,以发现提高太阳能吸附制冰机性能的趋势。实验测试台已在埃及上埃及的盖纳市建造。使用了四种不同的新型吸附对,即颗粒活性炭/R-410A、颗粒活性炭/R-511A、Maxsorb III/R-410A 和 Maxsorb III/R-511A。结果表明,基于 Maxsorb III/R-511A 的太阳能吸附制冰机制冷量比、性能系数和每公斤吸附剂的制冰量最高,分别约为 226.7 W/kg、0.197 和 1.96 kg/kg。而基于颗粒活性炭/R-410A 的太阳能吸附制冰机制冷量比和每公斤吸附剂的制冰量最低,分别为 0.104 和 1.38 kg/kg。此外,可以得出结论,所测试的对在太阳能吸附制冰机系统中是可行的,特别是在埃及上埃及这样的炎热气候下,可用于食品和疫苗的保存和储存。