Portable solar desalination system using membrane distillation
This paper presents the development of a portable solar desalination system using membrane distillation (MD) for processing seawater for drinking in remote areas and for emergency situations such as natural disasters. The portable system uses the vacuum MD to desalinate the seawater. Solar energy is...
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sg-ntu-dr.10356-969692021-01-13T07:14:42Z Portable solar desalination system using membrane distillation Tan, F. L. Prabu, M. Al-Zahrani, Saeed M. Choo, Fook Hoong School of Electrical and Electronic Engineering School of Mechanical and Aerospace Engineering Energy Research Institute @ NTU (ERI@N) This paper presents the development of a portable solar desalination system using membrane distillation (MD) for processing seawater for drinking in remote areas and for emergency situations such as natural disasters. The portable system uses the vacuum MD to desalinate the seawater. Solar energy is being harvested to provide the energy input for the MD. The portable system should be scalable so that numerous systems can be deployed in case of emergency. The system is self-contained and draws all its energy needs from solar energy. A combination of solar PV and solar thermal collectors are being exploited to harness the energy from the sun to power the portable system. The development work focuses on the engineering design of the MD system to optimize the water production within a given frame size for portability and energy availability. The challenge lies in the engineering of an efficient self-contained system that is reliable and ease of maintenance that will provide drinking water for all where clean drinking water is not readily available. 2013-07-17T06:53:05Z 2019-12-06T19:37:28Z 2013-07-17T06:53:05Z 2019-12-06T19:37:28Z 2012 2012 Journal Article Al-Zahrani, S. M., Choo, F. H., Tan, F. L., & Prabu, M. (2012). Portable solar desalination system using membrane distillation. Water practice & technology, 7(4), 1-6. 1751-231X https://hdl.handle.net/10356/96969 http://hdl.handle.net/10220/11754 10.2166/wpt.2012.068 en Water practice & technology © 2012 IWA Publishing. |
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This paper presents the development of a portable solar desalination system using membrane distillation (MD) for processing seawater for drinking in remote areas and for emergency situations such as natural disasters. The portable system uses the vacuum MD to desalinate the seawater. Solar energy is being harvested to provide the energy input for the MD. The portable system should be scalable so that numerous systems can be deployed in case of emergency. The system is self-contained and draws all its energy needs from solar energy. A combination of solar PV and solar thermal collectors are being exploited to harness the energy from the sun to power the portable system. The development work focuses on the engineering design of the MD system to optimize the water production within a given frame size for portability and energy availability. The challenge lies in the engineering of an efficient self-contained system that is reliable and ease of maintenance that will provide drinking water for all where clean drinking water is not readily available. |
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School of Electrical and Electronic Engineering |
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School of Electrical and Electronic Engineering Tan, F. L. Prabu, M. Al-Zahrani, Saeed M. Choo, Fook Hoong |
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Article |
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Tan, F. L. Prabu, M. Al-Zahrani, Saeed M. Choo, Fook Hoong |
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Tan, F. L. Prabu, M. Al-Zahrani, Saeed M. Choo, Fook Hoong Portable solar desalination system using membrane distillation |
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Tan, F. L. |
title |
Portable solar desalination system using membrane distillation |
title_short |
Portable solar desalination system using membrane distillation |
title_full |
Portable solar desalination system using membrane distillation |
title_fullStr |
Portable solar desalination system using membrane distillation |
title_full_unstemmed |
Portable solar desalination system using membrane distillation |
title_sort |
portable solar desalination system using membrane distillation |
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2013 |
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https://hdl.handle.net/10356/96969 http://hdl.handle.net/10220/11754 |
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