Hydrogen Production Properties of Aluminum–Magnesium Alloy Presenting β-Phase Al3Mg2

Author:

Cuzacq Laurent1,Polido Chloé1,Silvain Jean-François12,Bobet Jean-Louis1

Affiliation:

1. Department of Chemistry, University Bordeaux, CNRS, Bordeaux INP, ICMCB, UMR 5026, 33600 Pessac, France

2. Department of Electrical and Computer Engineering, University of Nebraska-Lincoln, Lincoln, NE 68588, USA

Abstract

In this study, aluminum–magnesium (Al-Mg) bulk porous materials were fabricated by using uniaxial hot pressing to control the porosity rate of the material over a wide range (up to 50%). The fabricated materials were analyzed by X-ray diffraction and scanning electron microscopy. The results demonstrated the appearance of intermetallic (IM) phase Al3Mg2, and its quantity increased with the applied pressure. In the context of the decline of global fossil fuel reserves, the revalorization of these materials by hydrogen (H2) production was investigated. Hydrolysis of the Al-Mg materials was carried out in a simulated seawater solution (aqueous solution of sodium chloride 35 g/L). The results showed the role of the porosity rate in the H2 production properties of the fabricated materials; the increase of porosity rate from 10% to 50% cuts the reaction time in half. Finally, the role of IM phase Al3Mg2 in H2 production was highlighted through galvanic coupling.

Funder

MENRT

ANR

Publisher

MDPI AG

Subject

General Materials Science,Metals and Alloys

Reference40 articles.

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2. Vargel, C. (2023, September 04). Métallurgie de L’aluminium. Available online: https://www.techniques-ingenieur.fr/base-documentaire/materiaux-th11/metaux-et-alliages-non-ferreux-42357210/metallurgie-de-l-aluminium-m4663/.

3. Intermetallic Compounds and Antiphase Domains in Al/Mg Compound Casting;Hajjari;Intermetallics,2012

4. (2021, September 22). L’aluminium: Dossier Complet|Techniques de L’Ingénieur. Available online: https://www.techniques-ingenieur.fr/base-documentaire/43804210-techniques-du-batiment-connaitre-les-materiaux-de-la-construction/download/tba1066/l-aluminium.html.

5. Murray, J.L. (1992). ASM Handbook, Volume 3, Alloy Phase Diagrams, ASM International.

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