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Combustion synthesis of TiFe by utilizing magnesiothermic reduction

机译:镁热还原燃烧合成TiFe

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摘要

This paper describes a new method for producing TiFe hydrogen storage alloy through combustion synthesis by utilizing the magnesiothermic reduction reaction. The reaction mechanism and the effects of a gaseous atmosphere and pressure on the purity of TiFe products and their hydrogen storage properties were examined in this study. In the experiments, Fe, TiO2, and Mg were used as raw materials and were mixed in a molar ratio of 1:1:4. The mixture was compacted and then heated in a normal or pressurized atmosphere of hydrogen and argon. Temperature changes with time were measured, and the obtained results indicated that the melting of magnesium triggered the reaction. X-ray diffraction analysis revealed that highly pure TiFe could be synthesized in a pressurized atmosphere, containing both hydrogen and argon. The products synthesized in such a pressurized atmosphere stored approximately 1.0 mass% hydrogen and indicated flat plateaus. The process proposed in this study showed the possibility of being a new attractive production method for TiFe hydrogen storage alloy. (C) 2014 Elsevier B.V. All rights reserved.
机译:本文介绍了一种利用镁热还原反应燃烧合成钛铁储氢合金的新方法。本研究考察了反应机理以及气体气氛和压力对TiFe产物纯度及其储氢性能的影响。在实验中,Fe,TiO2和Mg被用作原料,并以1:1:4的摩尔比混合。将混合物压实,然后在氢气和氩气的正常或加压气氛中加热。测量了温度随时间的变化,所得结果表明镁的熔化引发了反应。 X射线衍射分析表明,可以在含有氢气和氩气的加压气氛中合成高纯度的TiFe。在这样的加压气氛下合成的产物存储了约1.0质量%的氢并显示出平坦的平台。这项研究中提出的工艺显示出可能成为TiFe储氢合金的一种有吸引力的新生产方法。 (C)2014 Elsevier B.V.保留所有权利。

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