LAPSE:2023.24153
Published Article

LAPSE:2023.24153
A Portable Direct Methanol Fuel Cell Power Station for Long-Term Internet of Things Applications
March 27, 2023
Abstract
With regard to the best electro-chemical efficiency of an active direct methanol fuel cell (DMFC), the stacks and their balance of plant (BOP) are complex to build and operate. The yield of making the large-scale stacks is difficult to improve. Therefore, a portable power station made of multiple simpler planar type stack modules with only appropriate semi-active BOPs was developed. A planar stack and its miniature BOP components are integrated into a semi-active DMFC stack module for easy production, assembly, and operation. An improved energy management system is designed to control multiple DMFC stack modules in parallel to enhance its power-generation capacity and stability so that the portability, environmental tolerance, and long-term durability become comparable to that of the active systems. A prototype of the power station was tested for 3600 h in an actual outdoor environment through winter and summer. Its performance and maintenance events are analyzed to validate its stability and durability. Throughout the test, it maintained the daily average of 3.3 W power generation with peak output driving capability of 12 W suitable for Internet of Things (IoT) applications.
With regard to the best electro-chemical efficiency of an active direct methanol fuel cell (DMFC), the stacks and their balance of plant (BOP) are complex to build and operate. The yield of making the large-scale stacks is difficult to improve. Therefore, a portable power station made of multiple simpler planar type stack modules with only appropriate semi-active BOPs was developed. A planar stack and its miniature BOP components are integrated into a semi-active DMFC stack module for easy production, assembly, and operation. An improved energy management system is designed to control multiple DMFC stack modules in parallel to enhance its power-generation capacity and stability so that the portability, environmental tolerance, and long-term durability become comparable to that of the active systems. A prototype of the power station was tested for 3600 h in an actual outdoor environment through winter and summer. Its performance and maintenance events are analyzed to validate its stability and durability. Throughout the test, it maintained the daily average of 3.3 W power generation with peak output driving capability of 12 W suitable for Internet of Things (IoT) applications.
Record ID
Keywords
direct methanol fuel cell, energy management system, in-field test, Internet of Things, long-term, multi stacks, portable power
Subject
Suggested Citation
Chou CJ, Jiang SB, Yeh TL, Tsai LD, Kang KY, Liu CJ. A Portable Direct Methanol Fuel Cell Power Station for Long-Term Internet of Things Applications. (2023). LAPSE:2023.24153
Author Affiliations
Chou CJ: Institute of Opto-Mechatronics Engineering, National Central University, Taoyuan City 32001, Taiwan [ORCID]
Jiang SB: Institute of Opto-Mechatronics Engineering, National Central University, Taoyuan City 32001, Taiwan
Yeh TL: Institute of Mechanical Engineering, National Central University, Taoyuan City 32001, Taiwan
Tsai LD: Material and Chemical Research Laboratories (MCL), Industrial Technology Research Institute (ITRI), B77, 195, Sec. 4, Chung Hsing Rd. Chutung, Hsingchu City 31057, Taiwan
Kang KY: Material and Chemical Research Laboratories (MCL), Industrial Technology Research Institute (ITRI), B77, 195, Sec. 4, Chung Hsing Rd. Chutung, Hsingchu City 31057, Taiwan
Liu CJ: Material and Chemical Research Laboratories (MCL), Industrial Technology Research Institute (ITRI), B77, 195, Sec. 4, Chung Hsing Rd. Chutung, Hsingchu City 31057, Taiwan
Jiang SB: Institute of Opto-Mechatronics Engineering, National Central University, Taoyuan City 32001, Taiwan
Yeh TL: Institute of Mechanical Engineering, National Central University, Taoyuan City 32001, Taiwan
Tsai LD: Material and Chemical Research Laboratories (MCL), Industrial Technology Research Institute (ITRI), B77, 195, Sec. 4, Chung Hsing Rd. Chutung, Hsingchu City 31057, Taiwan
Kang KY: Material and Chemical Research Laboratories (MCL), Industrial Technology Research Institute (ITRI), B77, 195, Sec. 4, Chung Hsing Rd. Chutung, Hsingchu City 31057, Taiwan
Liu CJ: Material and Chemical Research Laboratories (MCL), Industrial Technology Research Institute (ITRI), B77, 195, Sec. 4, Chung Hsing Rd. Chutung, Hsingchu City 31057, Taiwan
Journal Name
Energies
Volume
13
Issue
14
Article Number
E3547
Year
2020
Publication Date
2020-07-09
ISSN
1996-1073
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Original Submission
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PII: en13143547, Publication Type: Journal Article
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LAPSE:2023.24153
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https://doi.org/10.3390/en13143547
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Mar 27, 2023
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