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Fast hydriding Mg-Zr-Mn-Ni alloy compositions for high capacity hydrogen storage application

机译:用于高容量储氢应用的快速氢化Mg-Zr-Mn-Ni合金成分

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摘要

Hydrogen is one of the best alternative to petroleum as an energy carrier. However, the development of a Hydrogen-based economy requires commercialization of safe and cost-effective Hydrogen storage system. In this paper, alloys belonging to Mg-Zr-Mn-Ni alloy system are synthesized using high energy ball milling method. The particle size evolution, chemical analysis and nano-scaled structures were characterized by using SEM, EDXS and XRD techniques, respectively. The optimized - highest hydrogen storing - alloy has particle size of about 8.36 ± 1.17 urn with crystallite size 16.99 ± 5.48 nm. Hydrogen absorption-desorption measurement is carried out on the principle of pressure reduction method. The alloy coded with MZ1 shows uptake of greater than 7 mass % H_2 at a charging temperature of 200 ℃, indicating high gravimetric hydrogen storage capacity at relatively lower hydriding temperature. The optimized Mg-Zr-Mn-Ni alloy also shows considerably enhanced hydriding - dehydriding kinetics, compare to pure Mg.
机译:氢是石油作为能源载体的最佳替代品之一。但是,氢经济的发展要求安全且具有成本效益的氢存储系统商业化。本文采用高能球磨法合成了Mg-Zr-Mn-Ni合金系合金。分别使用SEM,EDXS和XRD技术表征了颗粒尺寸演变,化学分析和纳米级结构。经过优化的储氢量最高的合金的粒径约为8.36±1.17,微晶尺寸为16.99±5.48 nm。氢吸收-解吸测量是基于减压法的原理进行的。用MZ1编码的合金在200℃的充电温度下显示出大于7质量%的H_2吸收,表明在相对较低的氢化温度下具有较高的重量储氢能力。与纯Mg相比,优化的Mg-Zr-Mn-Ni合金还显示出显着增强的氢化-脱水动力学。

著录项

  • 来源
    《International journal of hydrogen energy 》 |2012年第4期| p.3671-3676| 共6页
  • 作者单位

    Electrical Research and Development Association, GIDC Estate, Makarpura, Vadodara, India;

    Electrical Research and Development Association, GIDC Estate, Makarpura, Vadodara, India;

    Electrical Research and Development Association, GIDC Estate, Makarpura, Vadodara, India;

    Physics Department, Faculty of Science, The M.S. University of Baroda, Vadodara 390 002, India;

    Electrical Research and Development Association, GIDC Estate, Makarpura, Vadodara, India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    mechanical alloying; pressure reduction techniques; hydriding - dehydriding kinetics;

    机译:机械合金化;减压技术;氢化-脱水动力学;

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