Effect of Al, Fe Addition on Thermodynamic Stability and Hydrogen Desorption KInetics from MgH2 Phase OF Mechanical Alloy
<p class="ArticleAnnotation">With the aim of lowering the temperature, improve the kinetics of the decomposition of stoichiometric hydride MgH<sub>2 </sub>was investigated the possibility of its complex doping Al, Fe using mechanochemical synthesis (RMS). The MA1 sample w...
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Vasyl Stefanyk Precarpathian National University
2016-10-01
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doaj-4716783b543245e497ccf2a111edc0742020-11-25T02:53:17ZengVasyl Stefanyk Precarpathian National UniversityФізика і хімія твердого тіла1729-44282309-85892016-10-0116357658510.15330/pcss.16.3.576-585669Effect of Al, Fe Addition on Thermodynamic Stability and Hydrogen Desorption KInetics from MgH2 Phase OF Mechanical AlloyО. G. Еrshova0V. D. Dobrovolsky1Yu. М. Solonin2A. Yu. Koval3Інститут проблем матеріалознавства ім. І.М. Францевича НАН УкраїниІнститут проблем матеріалознавства ім. І.М. Францевича НАН УкраїниІнститут проблем матеріалознавства ім. І.М. Францевича НАН УкраїниІнститут проблем матеріалознавства ім. І.М. Францевича НАН України<p class="ArticleAnnotation">With the aim of lowering the temperature, improve the kinetics of the decomposition of stoichiometric hydride MgH<sub>2 </sub>was investigated the possibility of its complex doping Al, Fe using mechanochemical synthesis (RMS). The MA1 sample was derived by reactive milling Mg + 10 wt% Al + 10 wt. % Fe powder mixture in the hydrogen atmosphere at pressure of 1.2 MPa in a reactor for 10 h. The formation (in conditions of mechanochemical synthesis) of hydride of solid solution of Al and Fe in magnesium Mg(Al,Fe)H<sub>2</sub> was experimentally checked. Found that adding to magnesium Al & Fe leads to lower of thermodynamic stability<strong> </strong>and, consequently, to lower the temperature of the beginning of desorption of hydrogen to 250 <sup>0</sup>C at 0,1MPa H<sub>2</sub> (compared to MgH<sub>2</sub> without Al and Fe). After the first cycles of hydrogenation-dehydrogenation from gas phase MA, established by isobaric thermal desorption spectroscopy, the effect of lowering the temperature of the beginning desorbtion 315 <sup>0</sup>C (for non-alloy phase MgH2) to 250 <sup>0</sup>C was observed. Adding to magnesium aluminum with Fe significantly improves the kinetics of desorption of hydrogen from the hydride phase MgH<sub>2</sub> mechanical alloy produced by RMS.</p>http://journals.pu.if.ua/index.php/pcss/article/view/800 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
О. G. Еrshova V. D. Dobrovolsky Yu. М. Solonin A. Yu. Koval |
spellingShingle |
О. G. Еrshova V. D. Dobrovolsky Yu. М. Solonin A. Yu. Koval Effect of Al, Fe Addition on Thermodynamic Stability and Hydrogen Desorption KInetics from MgH2 Phase OF Mechanical Alloy Фізика і хімія твердого тіла |
author_facet |
О. G. Еrshova V. D. Dobrovolsky Yu. М. Solonin A. Yu. Koval |
author_sort |
О. G. Еrshova |
title |
Effect of Al, Fe Addition on Thermodynamic Stability and Hydrogen Desorption KInetics from MgH2 Phase OF Mechanical Alloy |
title_short |
Effect of Al, Fe Addition on Thermodynamic Stability and Hydrogen Desorption KInetics from MgH2 Phase OF Mechanical Alloy |
title_full |
Effect of Al, Fe Addition on Thermodynamic Stability and Hydrogen Desorption KInetics from MgH2 Phase OF Mechanical Alloy |
title_fullStr |
Effect of Al, Fe Addition on Thermodynamic Stability and Hydrogen Desorption KInetics from MgH2 Phase OF Mechanical Alloy |
title_full_unstemmed |
Effect of Al, Fe Addition on Thermodynamic Stability and Hydrogen Desorption KInetics from MgH2 Phase OF Mechanical Alloy |
title_sort |
effect of al, fe addition on thermodynamic stability and hydrogen desorption kinetics from mgh2 phase of mechanical alloy |
publisher |
Vasyl Stefanyk Precarpathian National University |
series |
Фізика і хімія твердого тіла |
issn |
1729-4428 2309-8589 |
publishDate |
2016-10-01 |
description |
<p class="ArticleAnnotation">With the aim of lowering the temperature, improve the kinetics of the decomposition of stoichiometric hydride MgH<sub>2 </sub>was investigated the possibility of its complex doping Al, Fe using mechanochemical synthesis (RMS). The MA1 sample was derived by reactive milling Mg + 10 wt% Al + 10 wt. % Fe powder mixture in the hydrogen atmosphere at pressure of 1.2 MPa in a reactor for 10 h. The formation (in conditions of mechanochemical synthesis) of hydride of solid solution of Al and Fe in magnesium Mg(Al,Fe)H<sub>2</sub> was experimentally checked. Found that adding to magnesium Al & Fe leads to lower of thermodynamic stability<strong> </strong>and, consequently, to lower the temperature of the beginning of desorption of hydrogen to 250 <sup>0</sup>C at 0,1MPa H<sub>2</sub> (compared to MgH<sub>2</sub> without Al and Fe). After the first cycles of hydrogenation-dehydrogenation from gas phase MA, established by isobaric thermal desorption spectroscopy, the effect of lowering the temperature of the beginning desorbtion 315 <sup>0</sup>C (for non-alloy phase MgH2) to 250 <sup>0</sup>C was observed. Adding to magnesium aluminum with Fe significantly improves the kinetics of desorption of hydrogen from the hydride phase MgH<sub>2</sub> mechanical alloy produced by RMS.</p> |
url |
http://journals.pu.if.ua/index.php/pcss/article/view/800 |
work_keys_str_mv |
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