Performance parameters of direct coupling advanced alkaline electrolysis and PEMFC system

Other Title(s)

معاملات أداء المنظومة المقترنة مباشرة من المحلل الكهربائي القلوي و خلية الوقود ذات غشاء الفصل البوليمري

Joint Authors

Ahmad, Hamzah
Musa, Abd al-Latif

Source

Solar Energy and Sustainable Development

Issue

Vol. 9, Issue 2 (31 Dec. 2020), pp.29-45, 17 p.

Publisher

Center for Solar Energy Research and Studies

Publication Date

2020-12-31

Country of Publication

Libya

No. of Pages

17

Main Subjects

Mechanical Engineering

Topics

Abstract EN

The proton exchange membrane fuel cell (PEMFC) is regarded as the most competitive candidate to replace the traditional forms of power conversion due to its prominent advantages.

The hydrogen gas is used as a main fuel in the fuel cells.

The hydrogen gas can be produced through the use of solar energy which is connected to alkaline electrolysis cell (AEC) by water splitting process known as electrolysis.

In this paper, a thermodynamic model is presented to design and optimize a direct coupling system (DCS) that has two cells, an alkaline electrolysis cell (AEC) and a proton exchange membrane fuel cell (PEMFC).

Moreover, the performances of the direct coupling system (DCS) are evaluated using numerical model that are built in Engineering Equations solver software.

So several parameters concerning the direct coupling system (DCS) such as the voltage of system, the hydrogen rate production from electrolysis which injects to fuel cell and producing power of the full system.

The simulations result show that, the voltage of alkaline electrolysis is higher than the fuel cell.

The water management process in the whole system is considered satisfactory due to the low value of the losses in the amount of water.

The water which is generated from the fuel cell is injected to electrolysis cell, so the electrolysis cell does not need to inject large quantities of water.

The efficiency of the system is about 34.85% and this efficiency is satisfactory compared to other systems of power generation as this percentage is due to clean, renewable and environmentally friendly fuel.

American Psychological Association (APA)

Ahmad, Hamzah& Musa, Abd al-Latif. 2020. Performance parameters of direct coupling advanced alkaline electrolysis and PEMFC system. Solar Energy and Sustainable Development،Vol. 9, no. 2, pp.29-45.
https://search.emarefa.net/detail/BIM-1340341

Modern Language Association (MLA)

Ahmad, Hamzah& Musa, Abd al-Latif. Performance parameters of direct coupling advanced alkaline electrolysis and PEMFC system. Solar Energy and Sustainable Development Vol. 9, no. 2 (Dec. 2020), pp.29-45.
https://search.emarefa.net/detail/BIM-1340341

American Medical Association (AMA)

Ahmad, Hamzah& Musa, Abd al-Latif. Performance parameters of direct coupling advanced alkaline electrolysis and PEMFC system. Solar Energy and Sustainable Development. 2020. Vol. 9, no. 2, pp.29-45.
https://search.emarefa.net/detail/BIM-1340341

Data Type

Journal Articles

Language

English

Notes

Includes bibliographical references : p. 44-45

Record ID

BIM-1340341