Innovative solid desiccant dehumidification using distributed microwaves

Author:

Ybyraiymkul Doskhan1,Chen Qian2,Burhan Muhammad1,Akhtar Faheem Hassan3,AlRowais Raid4,Shahzad Muhammad Wakil5,Ja M Kum1,Ng Kim Choon1

Affiliation:

1. King Abdullah University of Science and Technology

2. Tsinghua University

3. Lahore University of Management Sciences

4. Jouf University

5. Northumbria University

Abstract

Abstract Dehumidification is one of the key challenges facing the air conditioning (AC) industry in the treatment of moist air. Over many decades, the dual role of heat exchangers of AC chillers for the sensible and latent cooling of space has hindered the thermal-lift reduction in the refrigeration cycle due to the requirements of water vapor removal at dew-point and heat rejection to the ambient air. These practical constraints of AC chillers have resulted in the leveling of energy efficiency of mechanical vapor compressors (MVC) for many decades. One promising approach to energy efficiency improvement is the decoupling of dehumidification from sensible processes so that innovative but separate processes can be applied. In this paper, an advanced microwave dehumidification method is investigated in the laboratory, where the microwave (2.45 GHz) energy can be irradiated onto the dipole structure of water vapor molecules, desorbing rapidly from the pores of adsorbent. Results show a significant improvement in performance for microwave dehumidification, up to 4-fold, as compared to data available in the literature.

Publisher

Research Square Platform LLC

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4. 7730:2005 - Ergonomics of the thermal environment — Analytical determination and interpretation of thermal comfort using calculation of the PMV and PPD indices and local thermal comfort criteria;ISO - ISO

5. A Universal Mathematical Methodology in Characterization of Materials for Tailored Design of Porous Surfaces;Burhan M;Front Chem,2021

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