首页> 外文期刊>Processes >Highly Porous Graphitic Activated Carbons from Lignite via Microwave Pretreatment and Iron-Catalyzed Graphitization at Low-Temperature for Supercapacitor Electrode Materials
【24h】

Highly Porous Graphitic Activated Carbons from Lignite via Microwave Pretreatment and Iron-Catalyzed Graphitization at Low-Temperature for Supercapacitor Electrode Materials

机译:褐煤通过微波预处理和铁催化低温低温超级多孔石墨化活性炭

获取原文
           

摘要

At present, the preparation of highly porous graphitic activated carbons (HPGACs) using the usual physical and chemical activation methods has met a bottleneck. In this study, HPGACs are directly synthesized from lignite at 900 °C. The whole process is completed by a microwave pretreatment, a graphitization conversion of the carbon framework at a low temperature using a small amount of FeCl 3 (10–30 wt%), and a subsequent physical activation using CO 2 . Consequently, the dispersed and mobile iron species, in the absence of oxygen functional groups (removed during the microwave pretreatment), can greatly promote catalytic graphitization during pyrolysis, and, as an activating catalyst, can further facilitate the porosity development during activation. The as-obtained AC-2FeHLH-5-41.4(H) presents a low defect density, high purity, and specific surface area of 1852.43 m 2 g ?1 , which is far greater than the AC-HLH-5-55.6(H) obtained solely by physical activation. AC-2FeHLH-5-41.4(H) as a supercapacitor electrode presents an excellent performance in the further electrochemical measurements. Such a convenient and practical method with low cost proves a scalable method to prepare HPGACs from a wide range of coal/biomass materials for industrial scale-up and applications.
机译:目前,使用常规的物理和化学活化方法制备高度多孔的石墨活性炭(HPGAC)遇到了瓶颈。在这项研究中,HPGAC是在900°C下由褐煤直接合成的。整个过程通过微波预处理,使用少量FeCl 3(10–30 wt%)在低温下碳骨架的石墨化转化以及随后使用CO 2的物理活化来完成。因此,在没有氧官能团(在微波预处理期间除去)的情况下,分散的和可移动的铁物质可以极大地促进热解过程中的催化石墨化,并且作为活化催化剂,可以进一步促进活化期间的孔隙率的发展。如此获得的AC-2FeHLH-5-41.4(H)具有低缺陷密度,高纯度,比表面积为1852.43 m 2 g?1,远大于AC-HLH-5-55.6(H) )仅通过物理激活获得。 AC-2FeHLH-5-41.4(H)作为超级电容器电极在进一步的电化学测量中表现出出色的性能。这种方便,实用,低成本的方法证明了一种可扩展的方法,可以从多种煤/生物质材料制备HPGAC,用于工业规模化和应用。

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