The Effect of Adhesive Additives on Silica Gel Water Sorption Properties

Author:

Sztekler KarolORCID,Kalawa Wojciech,Mlonka-Medrala Agata,Nowak Wojciech,Mika ŁukaszORCID,Krzywanski JaroslawORCID,Grabowska KarolinaORCID,Sosnowski MarcinORCID,Debniak Marcin

Abstract

Adsorption chillers are characterized by low electricity consumption, lack of moving parts, and high reliability. The disadvantage of these chillers is their large weight due to low adsorbent sorption capacity. Therefore, the attention is turned to finding a sorbent with a high water sorption capacity and enhanced thermal conductivity to increase chiller efficiency. The article discusses the impact of selected adhesives used for the production of an adsorption bed in order to improve heat exchange on its surface. Experiments with silica gel with three commercial types of glue on metal plates representing heat exchanger were performed. The structure of samples was observed under a microscope to determine the coverage of adsorbent by glue. To determine the kinetics of the free adsorption, the amounts of moisture adsorbed and the desorption dynamics the prepared samples of coated bed on metal plates were moisturized and dried in a moisture analyzer. Samples made of silica gel mixed with the adhesive 2-hydroxyethyl cellulose, show high adsorption capacity, low dynamic adsorption, and medium dynamic desorption. Samples containing adhesive poly(vinyl alcohol) adsorb less moisture, but free adsorption and desorption were more dynamic. Samples containing the adhesive hydroxyethyl cellulose show lower moisture capacity, relatively dynamic adsorption, and lower dynamic desorption.

Publisher

MDPI AG

Subject

General Physics and Astronomy

Reference26 articles.

1. Japan Refrigeration and Air Conditioning Industry Association (JRAIA) World Air Conditioner Demand by Region https://www.jraia.or.jp/english/World_AC_Demand.pdf

2. IEA The Future of Cooling Opportunities for Energy- Efficient Air Conditioning https://pronto-core-cdn.prontomarketing.com/449/wp-content/uploads/sites/2/2018/06/Melanie-Slade-The-Future-of-Cooling-Opportunities-for-Energy-Efficient-Air-Conditioning.pdf

3. Modeling of a Combined Cycle Gas Turbine Integrated with an Adsorption Chiller

4. https://www.infona.pl/resource/bwmeta1.element.baztech-article-BPP2-0013-0023

5. Adsorption Bed Configurations for Adsorption Cooling Application;Stefański;E3S Web Conf.,2019

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