Enhanced performance of a direct contact membrane distillation (DCMD) system with a Ti/MgF2 solar absorber under actual weather environments
- Authors
- Shin, Jaewon; Lee, Hye Jin; An, Byung Min; Kim, Junki; Cho, Jinsoo; Wang, Dasom; Song, Kyung Guen; Choi, Won Jun; Baik, Jeong Min; Hong, Seungkwan
- Issue Date
- 1-10월-2020
- Publisher
- ELSEVIER
- Keywords
- Membrane distillation; Desalination; Solar absorber; Enhanced light absorption; Decentralized water supply
- Citation
- DESALINATION, v.491
- Indexed
- SCIE
SCOPUS
- Journal Title
- DESALINATION
- Volume
- 491
- URI
- https://scholar.korea.ac.kr/handle/2021.sw.korea/52513
- DOI
- 10.1016/j.desal.2020.114580
- ISSN
- 0011-9164
- Abstract
- In this study, we report on a solar membrane distillation (MD) system with a 5-stack Ti/MgF2 solar absorber adapted as a heat source under actual weather conditions. The 5-stack Ti/MgF2 solar absorber showed light absorption of 85% over the wavelength range from 0.3 to 2.5 mu m. This consequently induced greater heat and a two-fold greater water heating capability up to 80 degrees C for water in a closed water tank without insulation under a 1-sun illumination. The enhanced solar absorption of the Ti/MgF2 solar absorber showed a 12% improvement in permeate flux of the integrated MD system compared with a system without a solar absorber. Under actual weather conditions, the solar DCMD system with the Ti/MgF2 solar absorber successfully produced distillate water in the range of 0.51-4.78 L/m(2).day depending on weather conditions. Despite unfavorable solar irradiance conditions in autumn, the integrated DCMD system with the Ti/MgF2 solar absorber proved superior to a conventional commercial evacuated-tube solar collector in terms of daily production of distillate water and solar energy requirements for certain amounts of distillate.
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Collections - College of Engineering > School of Civil, Environmental and Architectural Engineering > 1. Journal Articles
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