首页> 外文会议>International Conference on Chemical Engineering and Advanced Materials >Role of Crystallitic Carbon in the Preparation of Mg-based Hydrogen Storage Materials by Reactive Milling
【24h】

Role of Crystallitic Carbon in the Preparation of Mg-based Hydrogen Storage Materials by Reactive Milling

机译:结晶碳在反应铣削中基于Mg基储氢材料的作用

获取原文

摘要

Magnesium-based hydrogen storage powders were prepared by reactive milling under hydrogen atmosphere. The crystallitic carbon, prepared from anthracite coal by demineralization and carbonization, was used as milling aid and synergic hydrogen storage additive of magnesium. Dispersive powders of particle size about 20 to 60 nm and hydrogen capacity of 4.78 wt.% were prepared from magnesium with 40 wt.% of crystallitic carbon by 3 h of milling under 1 MPa of hydrogen atmosphere. The hydrogen stored in carbon increased with the addition of Al, Mo, Co and Fe. FT-IR showed that the carbon atoms at the edges of crystallitic carbon particles were hydroge-nated into C-H during reactive milling with hydrogen. The initial dehydrogenation temperature of hydrogen-storage material 60Mg40C is 275.8 °C, and its dehydrogenation plateau pressure at 300 °C is 0.2 MPa and the length of the plateau is 5.0 wt.% of hydrogen capacity.
机译:通过在氢气氛下反应铣削制备基于镁的储氢粉末。通过脱矿质和碳化从无烟煤煤制备的结晶碳作为铣削助剂和镁的协同储氢添加剂。粒径约为20至60nm的分散粉末和4.78重量%的氢气。%用40重量%的镁制备10重量%的结晶碳,在1MPa的氢气氛下研磨3小时。碳中储存的氢气增加了Al,Mo,Co和Fe。 FT-IR表明,在反应性研磨期间,结晶碳颗粒边缘的碳原子在用氢气的反应铣削期间液压反成C-H.储氢材料的初始脱氢温度为60mg40c为275.8℃,并且其300℃的脱氢平台压力为0.2MPa,高原的长度为5.0重量%。氢气容量为5.0重量%。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号