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Low-cost metal oxide activated carbon prepared and modified by microwave heating method for hydrogen storage

机译:微波加热法制备改性的低成本金属氧化物活性炭储氢

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摘要

Novel microporous activated carbon (MAC) with high surface area and pore volume has been synthesized by microwave heating. Iron oxide nanoparticles were loaded into MAC by using Fe(NO_3)_3 -9H_2O followed by microwave irradiation for up to five minutes. The surface modified microporous activated carbon was characterized by BET, XRD, SEM and thermogravimetric examinations. Adsorption data of H_2 on the unmodified and modified MACs were collected with PCT method for a pressure range up to 120 bar at 303 K. Greater hydrogen adsorption was observed on the carbon adsorbents doped with 1.45 wt% of iron oxide nanoparticle loaded due to the joint properties of hydrogen adsorption on the carbon surface and the spill-over of hydrogen molecules into carbon structures.
机译:通过微波加热合成了具有高表面积和孔体积的新型微孔活性炭(MAC)。通过使用Fe(NO_3)_3 -9H_2O将氧化铁纳米颗粒加载到MAC中,然后进行微波辐照最多五分钟。表面改性的微孔活性炭通过BET,XRD,SEM和热重分析进行表征。在303 K下,压力范围高达120 bar时,采用PCT方法收集了未改性和改性MAC上H_2的吸附数据。在掺有1.45 wt%的氧化铁纳米颗粒的碳吸附剂上,由于结合,吸附了更大的氢氢在碳表面上的吸附特性以及氢分子向碳结构的溢出。

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