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Hydrogen Storage Using Metal Oxide Loaded in Polymer-Derived Carbon

机译:使用负载在聚合物衍生的碳中的金属氧化物的储氢

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Hydrogen storages play an important part in hydrogen energy scenarios. Several methods have been investigated to store hydrogen effectively and adsorptive approach is one of the best methods proposed. Porous carbon is among adsorbent materials that have the potential to be used. Unfortunately, on its own, carbon showed a low hydrogen storage capacity. One way to improve the hydrogen uptake is to impregnate carbon with metal. This paper presents the synthesis and characterization of adsorbent based on nickel oxide/porous carbon for hydrogen adsorption. The porous carbon employed was polymer-derived carbon synthesized by pyrolysis of phenolic resin (1170 m~2/g specific surface area and 6.05 nm mean diameter). As comparison, a commercial carbon of biomass-derived carbon was also studied (1320 m~2/g specific surface area and 1.80 nm mean diameter). Both porous carbons were impregnated with a 20 wt.% nickel or a mix of 10 wt.% nickel and 10 wt.% magnesium in their oxide forms. To load metal in carbon, a wet incipient method was implemented to disperse nickel precursor inside pores of carbon followed with a calcination process at 375°C. The characterization by scanning electron microscopy-EDX showed a successful dispersion of metals on carbon. Adsorption measurement was performed at ambient temperature and resulting in an enhancement of hydrogen uptake by metal oxide-loaded carbon compared to only pristine carbon.
机译:氢气存储在氢能场景中起重要作用。已经研究了几种方法以有效地存储氢,吸附方法是所提出的最佳方法之一。多孔碳是具有潜力的吸附材料中的吸附材料。不幸的是,碳储存能力低。改善氢吸收的一种方法是用金属浸渍碳。本文介绍了基于氧化镍/多孔碳的吸附剂的合成和表征,用于氢吸附。所用的多孔碳是通过酚醛树脂的热解(1170m〜2 / G比表面积和6.05nm平均直径)合成的聚合物衍生碳。如比较,还研究了生物质衍生的碳的商业碳(1320m〜2 / g比表面积和1.80nm平均直径)。将两种多孔碳浸渍有20重量%的镍或10重量%镍和10重量%的氧化镍。为了在碳中加载金属,实施湿初期方法以分散在碳孔内的镍前体,然后在375℃下进行煅烧过程。扫描电子显微镜-EDX的表征显示碳上的金属成功分散。在环境温度下进行吸附测量并导致与仅原始碳相比,通过金属氧化物碳加压氢吸收。

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