首页> 外文期刊>International journal of hydrogen energy >A study on the effects of Fe_x/Ni_y/MgO_((1-x-y)) catalysts on the volumetric and electrochemical hydrogen storage of multi-walled carbon nanotubes
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A study on the effects of Fe_x/Ni_y/MgO_((1-x-y)) catalysts on the volumetric and electrochemical hydrogen storage of multi-walled carbon nanotubes

机译:Fe_x / Ni_y / MgO _((1-x-y))催化剂对多壁碳纳米管的体积和电化学储氢性能的影响

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The effects of various ratios of Fe/Ni/MgO and growth temperatures on yield, diameter and quality of multi-walled carbon nanotubes (MWCNTs) were studied. Thermal gravimetric analysis (TGA) confirmed that the MWCNT yield depends on Fe/Ni ratio with the following order; Fe_(0.5) Ni_(0.5) > Fe > Fe_(0.75) Ni_(0.25) > Fe_(0.25) Ni_(0.75) > Ni. The results indicated that there is an optimum temperature (940 ℃) for the MWCNT growth both from quality and quantity (yield) aspects as compared to other temperatures. Moreover, the changes on Fe/Ni to MgO ratio for the MWCNT growth revealed that Fe/Ni/MgO with the ratio of 17.5/17.5/65 had the highest quality and surface area as compared to the other ratios. The hydrogen storage capacities of MWCNTs grown on Fe/Ni/MgO with various ratios obtained by using volumetric technique were in ascending order as 17.5/17.5/65, 15/15/70, 12.5/12.5/75, 10/10/80, 20/20/60, 22.5/22.5/55 and 25/25/50. In addition, the defective sites and mean diameter of the MWCNTs influenced the desorption temperature of stored hydrogen. Hydrogen storage by using electrochemical technique showed that Fe/Ni/MgO with the ratio of 17.5/17.5/65 had the highest hydrogen storage capacity compared with the other ratios. Based on electrochemical analysis, there are two regimes for hydrogen adsorption on the MWCNTs, one at about 0.8 V and the other at 0.15 V. The study on two kinds of adsorption region showed that the ratio of hydrogen storage capacity at 0.8 V to hydrogen storage capacity at 0.15 V increased with the increasing of the mean diameter of MWCNTs. The ratio reached to maximum value for the MWCNTs grown on Fe/Ni/MgO with the ratio of 20/20/60 as compared to the other ratios.
机译:研究了不同比例的Fe / Ni / MgO和生长温度对多壁碳纳米管(MWCNTs)的产率,直径和质量的影响。热重分析(TGA)证实MWCNT的产率取决于Fe / Ni的比例,顺序如下: Fe_(0.5)Ni_(0.5)> Fe> Fe_(0.75)Ni_(0.25)> Fe_(0.25)Ni_(0.75)> Ni。结果表明,与其他温度相比,从质量和数量(产量)方面来看,MWCNT的生长都有一个最佳温度(940℃)。此外,随着MWCNT的生长,Fe / Ni / MgO比的变化表明,与其他比例相比,比例为17.5 / 17.5 / 65的Fe / Ni / MgO具有最高的质量和表面积。使用体积技术在各种比例的Fe / Ni / MgO上生长的MWCNTs的储氢能力按升序依次为17.5 / 17.5 / 65、15 / 15 / 70、12.5 / 12.5 / 75、10 / 10/80, 20/20 / 60、22.5 / 22.5 / 55和25/25/50。另外,多壁碳纳米管的缺陷部位和平均直径影响了所储存氢的解吸温度。电化学储氢技术表明,Fe / Ni / MgO比为17.5 / 17.5 / 65时,储氢容量最高。基于电化学分析,MWCNTs有两种吸附氢的方式,一种在约0.8 V时,另一种在0.15 V时。对两种吸附区的研究表明,在0.8 V时储氢量与储氢量之比0.15 V时的容量随MWCNTs平均直径的增加而增加。与其他比率相比,在Fe / Ni / MgO上生长的MWCNT的比率达到最大值,比率为20/20/60。

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