Effect of Milling Time on The Desorption Temperature of Mgh2-10wt% Fe3O4 for Hydrogen Storage Materials Application

Author:

Ulandari A,Rahwanto A,Handoko E,Jalil Z

Abstract

Abstract The effect of milling time on the desorption temperature of hydrogen storage material MgH2-Fe3O4 has been carried out. This study aims to determine the effect of milling time variation and the effect of adding Fe3O4 catalyst on the characterization of MgH2. Milling time variation using mechanical alloying technique, with milling time given for 10 hours, 20 hours, 30 hours with a ball ratio of 10: 1 and a speed of 350 rpm. MgH2–10wt% Fe3O4 was characterized using XRD and DSC. The results showed the phases of MgH2, MgO, and Fe3O4. The crystal grain size of MgH2 decreased from 11.81 nm to 8.35 nm. Variation of ownership time and the addition of Fe3O4 catalyst can reduce the desorption time from 377oC to 369oC.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Reference20 articles.

1. Catalytic effect of nanoparticle 3d-transition metals in hydrogen storage properties in magnesium hydride MgH2 prepared by mechanical milling;Hanada;J Phys Chem B,2005

2. Improving Hydrogen Storage Properties of MgH2 by addition of Alkali Hydroxide;Wang;International Journal of Hydrogen Energy,2013

3. Dehidrogenation Kinetics and Modelling Studies of MgH2 Enhanced by Transition Metal Oxide Catalysts Using Constant Pressure Thermodynamic Driving Force;Sabitu,2012

4. Effect of nanostructure Ni on the sorption properties of mechanical milled MgH;Jalil;MATEC, Web of Conferences,2018

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