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首页> 外文期刊>Journal of nanoscience and nanotechnology >Effect of MWCNT (Multi-Walled Carbon Nano-Tube) Doping on Hydrogenation Kinetics of Mg-CaO Alloys
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Effect of MWCNT (Multi-Walled Carbon Nano-Tube) Doping on Hydrogenation Kinetics of Mg-CaO Alloys

机译:MWCNT(多壁碳纳米管)掺杂对Mg-Cao合金氢化动力学的影响

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摘要

Magnesium hydride has a high hydrogen storage capacity (7.6 wt.%), and is cheap and lightweight, thus advantageous as a hydrogen storage alloy. However, Mg-based hydrides undergo hydrogenation/dehydrogenation at high temperature and pressure due to their thermodynamic stability and high oxidation reactivity. Various attempts have been made to lower the reaction rate and dehydrogenation temperature by adding transition elements (e.g., Ti, Fe, Co, Ni, Ce), metal oxides, and intermetallic compounds to overcome these shortcomings. On the other hand, carbon materials have been mainly studied in the field of hydrogen storage with high specific surface area and lightweight properties; however, results show that they cannot store a large amount of hydrogen. Recently, it has been theoretically reported that carbon materials act as adsorbents in hydrogen storage. This study focuses on the hydrogenation behavior of MgHx-CaO and MgHx-CaO-MWCNT composites prepared by hydrogen-induced mechanical alloying, and investigates the properties of these composite materials.
机译:氢化镁具有高储氢容量(7.6重量%),并且具有便宜和轻巧,因此有利的是储氢合金。然而,由于其热力学稳定性和高氧化反应性,Mg基氢化物在高温和压力下经历氢化/脱氢。通过添加过渡元件(例如,Ti,Fe,Co,Ni,Ce),金属氧化物和金属间化合物来降低反应速率和脱氢温度的各种尝试以克服这些缺点。另一方面,碳材料主要研究了具有高比表面积和轻质性能的储氢领域;然而,结果表明它们不能储存大量的氢气。最近,理论上,已经报道了碳材料作为储氢中的吸附剂。该研究侧重于通过氢诱导的机械合金化制备的MGHX-CaO和MGHX-CAO-MWCNT复合材料的氢化行为,并研究了这些复合材料的性质。

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