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A Sintered Zeolite-coated Bed for Adsorption Air Conditioning Systems

机译:用于吸附式空调系统的烧结沸石涂层床

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摘要

Adsorption air conditioning driven by a low temperature heat source or renewable energy, without any environmental pollution is considered as a green conditioning style for the 21st century. Zeolite is a widely used adsorbent which has good adsorption ability. However, the low thermal conductivity of zeolite grains and the large contact thermal resistance between Zeolite and heat transfer wall limit its heat transfer performance. Therefore, the enhancement of heat transfer of the adsorbent bed is a crucial issue. In this paper, a new-style manufacturing process and performance of sintered zeolite is developed because the heat transfer enhancement is mainly related to the good adhesion between metal and adsorbent. And an experimental device of adsorption air conditioning systems with sintered zeolite-coated bed was built. The performance of heat transfer and adsorption of a lab scale adsorption air condition working with sintered zeolite (13X)-water are presented and discussed. The results indicated that its maximum effective thermal conductivity was increased to 0.564W/(m.K) which was 6~8 times as zeolite grains and the sintered zeolite layer did not have significantly influence on the adsorption properties of the pure zeolite compared with the traditional beds. Furthermore, to determine the conditions which are available for the most effective heat and mass transfer in the new adsorbent bed, an optimization study has been carried out.
机译:由低温热源或可再生能源驱动的吸附式空调不受任何环境污染,被认为是21世纪的绿色空调风格。沸石是具有良好吸附能力的广泛使用的吸附剂。然而,沸石晶粒的低导热率以及沸石与传热壁之间的大接触热阻限制了其传热性能。因此,提高吸附剂床的热传递是至关重要的问题。由于传热的增强主要与金属与吸附剂之间的良好附着力有关,因此,本文提出了一种新型的烧结沸石制造工艺和性能。并建立了带有沸石烧结床的吸附式空调系统的实验装置。介绍并讨论了在烧结沸石(13X)-水作用下的实验室规模吸附空调的传热和吸附性能。结果表明,其最大有效导热系数提高到了0.564W /(mK),是沸石颗粒的6〜8倍,并且与传统床相比,烧结的沸石层对纯沸石的吸附性能没有显着影响。 。此外,为了确定在新的吸附床中进行最有效的传热和传质的条件,已进行了优化研究。

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