Oxygen Electrochemical Production from Air by High Performance Anion Exchange Membrane Electrode Assemble Devices

Author:

Tian Bo Yuan1,Deng Zhan Feng1,Xu Gui Zhi1,Song Xiao Yun1,Zhang Gao Qun1,Deng Jia Yao1

Affiliation:

1. Global Energy Interconnection Research Institute Co., Ltd.

Abstract

CoNi and FeCoNi hydroxide with narrow voltage distance between oxygen reduction reaction and oxygen evolution reaction was synthetized by electro-deposition in low solvent concentration. 5cm2 Membrane electrode assemble (MEA) electrolyzers composed with anion exchange membrane, homogenerated catalyst on both cathode and anode gas diffusion layer (GDL) was fabricated for oxygen electrochemical production from air. The current and yield of binary CoNi device reached up to 466.7mA and 4.4mmol/h (94.7% conversion rate) at 1.2V. The ternary FeCoNi device showed only 0.5% degradation from 394.0mA during 12h. The applicability of oxygen production from air by high performance electrochemical devices was demonstrated.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference18 articles.

1. A. Tseung, and S. M. Jasem, An integrated electrochemical-chemical method for the extraction of O 2 from air,, Journal of Applied Electrochemistry, vol. 11, no. 2, pp.209-215, (1981).

2. B. L. Kuzin, A. K. Demin, A. S. Lipilin, and M. V. Perfilev, Electrochemical Method of Producing Oxygen from Air - the Energy Aspect of the Problem,, Soviet Electrochemistry, vol. 22, no. 9, pp.1193-1195, Sep, (1986).

3. W. Feduska, A. O. Isenberg, and J. T. Brown, Solid oxide electrolyte electrochemical oxygen generator,, CA, (1991).

4. M. Gilberg, and D. W. Grattan, Dynamic system for removing oxygen from air using an electrochemical cell,, Studies in Conservation, vol. 41, no. 3, pp.183-186, (1996).

5. P. D. Gallo, and G. Gouriou, Process for the production of oxygen from air, in particular by means of an electrochemical cell with a ceramic membrane and with controlling means allowing a continuous oxygen production,, (2007).

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