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Hydrogen production via hydrolysis of Mg-oxide composites

机译:氧化镁复合物水解制氢

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Mg is an attractive candidate for hydrogen generation due to its low cost and high availability as well as its high theoretical H-2 yield and the formation of environmentally friendly byproducts during hydrolysis. On the other hand, the hydrolysis reaction of Mg is rapidly interrupted by the formation of a passive magnesium hydroxide layer. Hydrogen generation via the reaction of ball milled Mg-oxide composites with 3.5% NaCl solution at room temperature was investigated in this paper. Several cheap metal oxides (Fe2O3, CaO, MoO3, Fe3O4, Nb2O5 and TiO2) were used to assess the effects of hydrolysis on the magnesium powder. The results show that Mg-5 wt% MoO3 and Fe2O3 demonstrate the best hydrolysis performance (above 888 mL/g and 95.2% of theoretical hydrogen generation yield in 10 min) in comparison to Mg-Fe3O4, Mg-TiO2, Mg-Nb2O5 and Mg-CaO composites. In addition, the effects of different Mg contents and milling times on the hydrolysis property of the Mg powder were also studied and it was concluded that the addition of 5 wt% oxide and a milling time of 1 h are the optimal parameters for the production of the Mg-MoO3 composite. Moreover, the valence state of metal ions was found to have an important influence on the hydrolysis reaction for the first time. The effect of valence state has been studied for Mg-Fex+ and Mg-Mox+ composites and the results show that a higher valence value of the transition metal ions leads to a better hydrolysis property of Mg. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:镁由于其低成本和高可用性以及其高的理论H-2收率和在水解过程中形成环境友好的副产物而成为制氢的有吸引力的候选物。另一方面,Mg的水解反应由于钝化氢氧化镁层的形成而迅速中断。本文研究了室温下球磨氧化镁复合材料与3.5%NaCl溶液反应制氢。几种廉价的金属氧化物(Fe2O3,CaO,MoO3,Fe3O4,Nb2O5和TiO2)用于评估水解对镁粉的影响。结果表明,与Mg-Fe3O4,Mg-TiO2,Mg-Nb2O5和Mg-5wt%的MoO3和Fe2O3相比,Mg-Fe3O4,Mg-TiO2,Mg-Nb2O5和Fe2O3表现出最佳的水解性能(在10分钟内高于888 mL / g和理论生氢产率的95.2%)。 Mg-CaO复合材料。此外,还研究了不同的镁含量和研磨时间对镁粉水解性能的影响,并得出结论,添加5 wt%的氧化物和1 h的研磨时间是生产Mg粉的最佳参数。 Mg-MoO3复合材料。此外,首次发现金属离子的价态对水解反应具有重要影响。研究了价态对Mg-Fex +和Mg-Mox +复合材料的影响,结果表明,过渡金属离子的化合价越高,Mg的水解性能越好。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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